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Technical Information Posters Papers
1,4-bis [2- (9-ethylcarbazol-3-yl) vinyl] benzene (Organic light-emitting diode material)
1,4-bis [2- (9-ethylcarbazol-3-yl) vinyl] benzene (Organic light-emitting diode material)
Arabinogalactan from Larch Wood
Arabinogalactan from Larch Wood
Sclareol, (+)-sclareolide (Sesquiterpenes)
SEC-MS: Insulin (Human, recombinant)
1,4-bis [4- (N,N-diphenylamino) styryl] benzene (Organic light-emitting diode material)
1,4-bis [4- (N,N-diphenylamino) styryl] benzene (Organic light-emitting diode material)
1,1,4,4-Tetraphenyl-1,3-butadiene (Organic light-emitting diode material)
SEC-MS: Insulin (Bovine Pancreas)
SEC-MS: Alpha-Lactalbumin
Organic light-emitting diode blue dopant materials
1,2,3,4,5-Pentaphenyl-1,3-cyclopentadiene (Organic light-emitting diode material)
Quinacridone (Organic light-emitting diode material)
Quinacridone (Organic light-emitting diode material)
9,10-Bis [N- (m-tolyl) anilino] anthracene (Organic light-emitting diode material)
9,10-Bis [N- (m-tolyl) anilino] anthracene (Organic light-emitting diode material)
SEC-MS: Cytochrome c (cyt c)
Organic light-emitting diode host materials
Bis [2- (2-benzothiazolyl) phenolato] zinc (II) (Organic light-emitting diode material)
Bis [2- (2-benzothiazolyl) phenolato] zinc (II) (Organic light-emitting diode material)
SEC-MS: Recombinant human serum albumin (rHSA)
Coumarin 153 (Organic light-emitting diode material)
Coumarin 153 (Organic light-emitting diode material)
3- (2-Benzothiazolyl) -7- (diethylamino) coumarin (Organic light-emitting diode material)
3- (2-Benzothiazolyl) -7- (diethylamino) coumarin (Organic light-emitting diode material)
SEC-MS: Bovine serum albumin (BSA)
LC-MS: Tris (2,2'-bipyridyl) ruthenium (II) (Dye for dye sensitized solar cell)
LC-MS: 8-Quinolinol and 8-quinolinolato metal complexes
Organic light-emitting diode host materials
2,4,6-Tri ([1,1'-biphenyl] -3-yl) -1,3,5-triazine (Organic light-emitting diode material)
2,4,6-Tri ([1,1'-biphenyl] -3-yl) -1,3,5-triazine (Organic light-emitting diode material)
9,9'-Di ([1,1'-biphenyl] -4-yl) -9H,9'H-3,3'-bicarbazole (Organic light-emitting diode material)
9,9'-Di ([1,1'-biphenyl] -4-yl) -9H,9'H-3,3'-bicarbazole (Organic light-emitting diode material)
4,4',4''-Tri-9-carbazolyltriphenylamine (Organic light-emitting diode material)
4,4',4''-Tri-9-carbazolyltriphenylamine (Organic light-emitting diode material)
LC-MS: Azulene sulfonic acid (Nonsteroidal anti-inflammatory drug)
LC-MS: Azulene sulfonic acid (Nonsteroidal anti-inflammatory drug)
1,3-Di-9-carbazolylbenzene (Organic light-emitting diode material)
1,3-Di-9-carbazolylbenzene (Organic light-emitting diode material)
LC-MS: Sclareol, (+)-sclareolide (Sesquiterpenes)
Bis [2- [ (oxo) diphenylphosphino ] phenyl ] ether (organic light-emitting diode material)
4,4'-Bis (2,2-diphenylvinyl) biphenyl (Organic light-emitting diode material)
LC-MS: Ethylene glycols
LC-MS: Ethylene glycols
Enzalutamide (Antineoplastic) and synthetic intermediate
Enzalutamide (Antineoplastic) and synthetic intermediate
Tris (2,2'-bipyridyl) ruthenium (II) (Dye for dye sensitized solar cell)
Tris (2,2'-bipyridyl) ruthenium (II) (Dye for dye sensitized solar cell)
Tris (2,2'-bipyridyl) ruthenium (II) (Dye for dye sensitized solar cell)
Azulene sulfonate (Nonsteroidal anti-inflammatory drug)
LC-MS: Statins (HMG-CoA reductase inhibitors)
LC-MS: Statins (HMG-CoA reductase inhibitors)
Triamterene (Potassium-sparing diuretic)
Triamterene (Potassium-sparing diuretic)
Simvastatin (Hypolipidemic agent)
Simvastatin (Hypolipidemic agent)
LC-MS: Canrenoic acid (Aldosterone antagonist)
LC-MS: Canrenoic acid (Aldosterone antagonist)
LC-MS: Canrenoic acid (Aldosterone antagonist)
Lovastatin (Hypolipidemic agent)
Lovastatin (Hypolipidemic agent)
Mevastatin (Hypolipidemic agent)
Mevastatin (Hypolipidemic agent)
Atorvastatin (Hypolipidemic agent)
Atorvastatin (Hypolipidemic agent)
Rosuvastatin (Hypolipidemic agent)
Rosuvastatin (Hypolipidemic agent)
Pravastatin (Hypolipidemic agent)
Pravastatin (Hypolipidemic agent)
LC-MS: Carminic acid (Cochineal dye)
Cochineal dye (Carminic acid)
LC-MS: Zeranol (Growth stimulant) , zearalenone (mycotoxin)
LC-MS: Zeranol (Growth stimulant) , zearalenone (mycotoxin)
LC-MS: Gemfibrozil (Hypolipidemic agent)
LC-MS: Gemfibrozil (Hypolipidemic agent)
Canrenoic acid (Aldosterone antagonist)
Canrenoic acid (Aldosterone antagonist)
LC-MS: Alpha-lipoic acid (Cofactor for mitocondrial enzymes)
LC-MS: Alpha-lipoic acid (Cofactor for mitocondrial enzymes)
Gemfibrozil (Hypolipidemic agent)
Gemfibrozil (Hypolipidemic agent)
Zeranol (Growth stimulant) , Zearalenone (Mycotoxin)
Zeranol (Growth stimulant) , Zearalenone (Mycotoxin)
LC-MS: Bisphenol A, diethylstilbestrol (Endocrine disrupter)
LC-MS: Bisphenol A, diethylstilbestrol (Endocrine disrupter)
LC-MS: erythromycin and derivatives (Antibiotics)
LC-MS: erythromycin and derivatives (Antibiotics)
LC-MS: erythromycin and derivatives (Antibiotics)
Benzpyrene isomers
Acceptor building block for organic semiconductor (Benzothiadiazole analogue)
Acceptor building block for organic semiconductor (Benzothiadiazole analogue)
Acceptor building block for organic semiconductor (Thiophene analogues)
Acceptor building block for organic semiconductor (Thiophene analogues)
Donor building block for organic semiconductor (Fluorene analogues)
Donor building block for organic semiconductor (Fluorene analogues)
LC-MS: Fosfomycin (Antibiotic)
LC-MS: Flonicamid (Pyridine carboxamide pesticides)
Donor building block for organic semiconductor (Dibromocarbazole analogues)
Donor building block for organic semiconductor (Dibromocarbazole analogues)
Abacavir
LC-MS: Nitrofurantoin (5-Nitrofuran antibacterial)
LC-MS: Meropenem (Carbapenem antibiotic)
Donor building block for organic semiconductor (Halogenated ethylenedioxythiophene analogues)
Donor building block for organic semiconductor (Halogenated ethylenedioxythiophene analogues)
Donor building block for organic semiconductor (Dibromothiophene isomers)
Donor building block for organic semiconductor (Dibromothiophene isomers)
LC-MS: Organic Redox-Flow Battery negative electrolyte (anthraquinonesulfonic acids)
LC-MS: Organic Redox-Flow Battery negative electrolyte (anthraquinonesulfonic acids)
LC-MS: Organic Redox-Flow Battery negative electrolyte (anthraquinonesulfonic acids)
Donor-acceptor building block for organic semiconductor 4,7-Bis(5-bromo-2-thienyl)-2,1,3-benzothiadiazole
Donor-acceptor building block for organic semiconductor 4,7-Bis(5-bromo-2-thienyl)-2,1,3-benzothiadiazole
Donor-acceptor building block for organic semiconductor 3,6-Di(2-thienyl)-2,5-dihydropyrrolo[3,4-c]pyrrole-1,4-dione
Donor-acceptor building block for organic semiconductor 3,6-Di(2-thienyl)-2,5-dihydropyrrolo[3,4-c]pyrrole-1,4-dione
Organic Redox-Flow Battery negative electrolyte (Methylviologen dichloride, Ethylviologen dibromide)
Organic Redox-Flow Battery negative electrolyte (Methylviologen dichloride, Ethylviologen dibromide)
LC-MS: Aztreonam (Monobactam antibiotic)
Organic Redox-Flow Battery negative electrolyte (2,2'- (2-Vinylanthracene-9,10-diylidene) bis (1,3-dithiole))
Organic Redox-Flow Battery negative electrolyte (2,2'- (2-Vinylanthracene-9,10-diylidene) bis (1,3-dithiole))
Organic Redox-Flow Battery positive electrolyte (10-Acetylphenothiazine)
Organic Redox-Flow Battery positive electrolyte (10-Acetylphenothiazine)
LC-MS: Metronidazolr type antiprotozoal (Metronidazole, tinidazole)
Organic Redox-Flow Battery positive electrolyte (TEMPO Free Radical)
Organic Redox-Flow Battery positive electrolyte (TEMPO Free Radical)
Organic Redox-Flow Battery positive electrolyte (TEMPO Free Radical)
Organic Redox-Flow Battery positive electrolyte (TEMPO Free Radical)
Organic Redox-Flow Battery positive electrolyte ((Ferrocenylmethyl)trimethylammonium Chloride)
Red yeast rice extract (Lovastatin, monacolin K)
LC-MS: Lovastatin (Monacolin K, red yeast rice ingredient)
LC-MS: Gluconic acid, glucuronic acid and lactones
Polyethylene glycol (PEG)
Polyethylene glycol (PEG)
Polyethylene glycol (PEG)
Organic Redox-Flow Battery positive electrolyte (Sebacate bisTEMPO ester)
Organic Redox-Flow Battery positive electrolyte (Sebacate bisTEMPO ester)
Changes in gluconolactone over time
LC-MS: Short-fatty acids
LC-MS: Acetic acid (Short-fatty acids)
LC-MS: Short-fatty acids
Sennoside (Laxative)
Triclocarban, triclosan (Chlorophenyl derivatives)
Triclocarban, triclosan (Chlorophenyl derivatives)
2, 3, 4 - tert - Butylphenol (Butylphenol isomers)
2, 3, 4 - tert - Butylphenol (Butylphenol isomers)
Abietic acid (Diterpenoids)
Abietic acid (Diterpenoids)
Flonicamid (Pyridine carboxamide pesticides)
Flonicamid (Pyridine carboxamide pesticides)
Phlorizin (Dihydrochalcone glycoside)
Phlorizin (Dihydrochalcone glycoside)
Nitrofurantoin (5-Nitrofuran antibacterial)
Nitrofurantoin (5-Nitrofuran antibacterial)
Tinidazole (Metronidazole type antiprotozoal)
Tinidazole (Metronidazole type antiprotozoal)
Fatty acid amide
Fatty acid amide
Metronidazole (Metronidazole type antiprotozoal)
Metronidazole (Metronidazole type antiprotozoal)
Meropenem (Carbapenem antibiotic)
Meropenem (Carbapenem antibiotic)
Aztreonam (Monobactam antibiotic)
Aztreonam (Monobactam antibiotic)
Phycocyanin from Spirulina
Phycocyanin from Spirulina
Phycocyanin from Spirulina
Rasagiline (Antiparkinsonian drug)
Rasagiline (Antiparkinsonian drug)
Rasagiline (Antiparkinsonian drug)
Rasagiline (Antiparkinsonian drug)
LC-MS: Fatty acid amides
LC-MS: Fatty acid amides
Venlafaxine (Antidepressant)
Venlafaxine (Antidepressant)
Monocyclic terpene isomers
Monocyclic terpene isomers
Mirtazapine (Antidepressant)
Mirtazapine (Antidepressant)
Mirtazapine (Antidepressant)
LC-MS/MS: Herbicides
LC-MS/MS: Estrogenic substances
LC-MS/MS: Polyether antibiotics
LC-MS/MS: Penicillin antibiotics
LC-MS/MS: Antiparasitic drugs
LC-MS/MS: Anti-inflammatory drugs
LC-MS/MS: Colistin
LC-MS/MS: Cephem antibiotics
LC-MS/MS: Bacitracin
LC-MS/MS: Aminoglycoside antibiotics (2)
LC-MS/MS: Aminoglycoside antibiotics (1)
LC-MS/MS: Sulfonamides
LC-MS/MS: Antiprotozoal agents
LC-MS/MS: Anticoccidial agents
LC-MS/MS: Pesticides (5)
LC-MS/MS: Antibiotics (11)
LC-MS/MS: Antibiotics (10)
LC-MS/MS: Antibiotics (9)
LC-MS/MS: Antibiotics (8)
LC-MS/MS: Antibiotics (7)
LC-MS/MS: Antibiotics (6)
LC-MS/MS: Ethoxyquin
LC-MS/MS: Carotenoids
LC-MS/MS: Chlorate
LC-MS/MS: Acrylamide
LC-MS/MS: Ornithine
LC-MS/MS: Amino acids
LC-MS/MS: Antibiotics (5)
LC-MS/MS: Antibiotics (4)
LC-MS/MS: Antibiotics (3)
LC-MS/MS: Antibiotics (2)
LC-MS/MS: Antibiotics (1)
LC-MS/MS: Dye compounds
LC-MS/MS: Butylated hydroxytoluene (BHT)
LC-MS/MS: Preservatives
LC-MS/MS: Stevia sweeteners
LC-MS/MS: Cannabinoid
LC-MS/MS: Sugar alcohols
LC-MS/MS: Pesticides (4)
LC-MS/MS: Pesticides (3)
LC-MS/MS: Flonicamid Metabolites
LC-MS/MS: Streptomycin, dihydrostreptomycin
LC-MS/MS: Pydiflumetofen
LC-MS/MS: Mancozeb
LC-MS/MS: Abamectin, emamectin
LC-MS/MS: 2,4-D
LC-MS/MS: Isonthiazolinone
LC-MS/MS: Aflatoxin
LC-MS/MS: Mycotoxin
LC-MS/MS: Spinosad
LC-MS/MS: Imidacloprid compounds
LC-MS/MS: Pesticides (2)
LC-MS/MS: Pesticides (1)
LC-MS/MS: Stevia sweeteners
LC-MS/MS: Isonthiazolinone
LC-MS/MS: Vitamin D3
LC-MS/MS: Vitamin B12
LC-MS/MS: Sucralose
LC-MS/MS: Patulin
LC-MS/MS: Inosinate, Guanylate
LC-MS/MS: Glufosinate metabolites
LC-MS/MS: Glyphosate
LC-MS/MS: Glyphosate, N-acetylglyphosate
LC-MS/MS: Glyphosate, Glufosinate
LC-MS/MS: Chlorophenols
LC-MS/MS: Chlorogenic acid
LC-MS/MS: Avilamycin
LC-MS: Dioctyl sulfosuccinate (Double-tail anionic surfactant)
LC-MS: Dioctyl sulfosuccinate (Double-tail anionic surfactant)
Methylcobalamin (Coenzyme form of Vitamin B12)
Methylcobalamin (Coenzyme form of Vitamin B12)
LC-MS: Pilocarpine (Antiglaucoma drug)
Griseofulvin (Antifungal agent)
Griseofulvin (Antifungal agent)
Usnic Acid (Aromatic polyketide)
Usnic Acid (Aromatic polyketide)
Salicin (Alcoholic beta-glucoside)
Salicin (Alcoholic beta-glucoside)
LC-MS: Coenzyme A and acetyl coenzyme A
Evodiamine (Alkaloid)
Evodiamine (Alkaloid)
7-Ethylcamptothecin (Camptothecin derivative)
7-Ethylcamptothecin (Camptothecin derivative)
LC-MS: Chelidonic acid
Camptothecin (Alkaloid)
Camptothecin (Alkaloid)
Helicide (Phenolic glycosides)
Helicide (Phenolic glycosides)
LC-MS: Neomycin B and C
LC-MS: Aminoglycoside antibiotics
Amygdalin (Cyanogenic glycoside)
Amygdalin (Cyanogenic glycoside)
Bergapten (Furanocoumarin)
Bergapten (Furanocoumarin)
Polyhexamethylene biguanide, Benzalkonium
Bergenin (Isocoumarin derivatives)
Bergenin (Isocoumarin derivatives)
Brucine (Indole alkaloid)
Brucine (Indole alkaloid)
Furan derivatives
Furan derivatives
Furan derivatives
Furan derivatives
Furan derivatives
LC-MS: Capsaicin (Capsaicinoid)
Capsaicin (Capsaicinoid)
Capsaicin (Capsaicinoid)
Pyrimidine isomers
Pyrimidine isomers
Aloe emodin (Stimulant laxative)
Aloe emodin (Stimulant laxative)
LC-MS: Cholane derivatives (Cholanic acids)
LC-MS: Cholane derivatives (Cholanic acids)
Chrysazin (Contact laxatives)
Chrysazin (Contact laxatives)
5-Nitrofurfural (Aromatic aldehyde)
Dicoumarol (Coumarin anticoagulant)
Dicoumarol (Coumarin anticoagulant)
LC-MS: Furan-carboxylic acid and -sulfonic acid
Flavokawain A (Chalcones)
Flavokawain A (Chalcones)
Isoflavones (Phytoestrogens)
Isoflavones (Phytoestrogens)
Triterpenic acids
LC-MS: Triterpenic acids
Furfural (Aromatic aldehyde)
Furfural (Aromatic aldehyde)
Furfural (Aromatic aldehyde)
Furfural (Aromatic aldehyde)
Furfural (Aromatic aldehyde)
Furfural (Aromatic aldehyde)
Gramine (Indole alkaloid)
Gramine (Indole alkaloid)
LC-MS: Citicoline (psychostimulant)
LC-MS: Components in permanent wave lotion (2)
LC-MS: Components in permanent wave lotion (2)
LC-MS: Components in permanent wave lotion (2)
Hematoxylin (Histology Stains)
Hematoxylin (Histology Stains)
Monocyclic pyrans (Koji fermentation metabolites)
Khellin (Furanochromone, Vasodilator)
Khellin (Furanochromone, Vasodilator)
Cholesterol related compounds
Magnolol (Lignan derivatives)
Magnolol (Lignan derivatives)
Oxacillin (beta-Lactam antibiotic)
Oxacillin (beta-Lactam antibiotic)
Nordihydroguaiaretic Acid (Lignan derivatives)
Nordihydroguaiaretic Acid (Lignan derivatives)
Loratadine (Antiallergic agent)
Loratadine (Antiallergic agent)
Loratadine (Antiallergic agent)
Noscapine (Antitussive, Isoquinoline Alkaloids)
Noscapine (Antitussive, Isoquinoline Alkaloids)
Nystatin (Polyene macrolide antibiotic)
Nystatin (Polyene macrolide antibiotic)
LC-MS: Nystatin (Polyene macrolide antibiotic)
LC-MS: Folinic acid (Antifolate)
Papaverine (Vasodilator)
Papaverine (Vasodilator)
Clonidine (Antihypertensive)
Indocyanine Green (Near infrared fluorescent dye)
Folinic acid (Antifolate)
Folinic acid (Antifolate)
Guanfacine (Antihypertensive)
Guanfacine (Antihypertensive)
Guanfacine (Antihypertensive)
LC-MS: Chlorhexidine (Antibacterial)
Phloretin (Polyphenol)
Phloretin (Polyphenol)
Piceid (Resveratrol derivatives)
Piceid (Resveratrol derivatives)
Chlorhexidine (Antibacterial)
Chlorhexidine (Antibacterial)
LC-MS: Tenofovir (Antiviral)
Quinidine (Antiarrhythmic)
Daidzein (Soybean isoflavone)
Daidzein (Soybean isoflavone)
Puerarin (Isoflavone)
Puerarin (Isoflavone)
Purpurin (Dye)
Quinidine (Antiarrhythmic)
Quinidine (Antiarrhythmic)
Tenofovir (Antiviral)
LC-MS: Adrafinil (Synthetic stimulant)
Adrafini (Synthetic stimulant)
Adrafini (Synthetic stimulant)
Rhododendrol (Tyrosinase inhibitor)
Rhododendrol (Tyrosinase inhibitor)
LC-MS: Citric acid and hydroxycitric acid
Sesamin (sesame lignan)
Sesamin (sesame lignan)
Rotenone (Botanical insecticide)
Rotenone (Botanical insecticide)
Sesamol (sesame lignan)
Sesamol (sesame lignan)
LC-MS: Musty odor compounds in drinking water
LC-MS: Musty odor compounds in drinking water
Aminonaphtholsulfonic acid isomers
Benfotiamine (Vitamin B1 derivatives)
Benfotiamine (Vitamin B1 derivatives)
Indigo (Dye, Pigment)
Indigo (Dye, Pigment)
LC-MS: Bosentan, macitentan (Pulmonary hypertension drug)
LC-MS: Bosentan, macitentan (Pulmonary hypertension drug)
Bosentan, Macitentan (pulmonary hypertension drug)
LC-MS: Aminonaphtholsulfonic acid isomers
LC-MS: Aminonaphtholsulfonic acid isomers
Bosentan, Macitentan (pulmonary hypertension drug)
Gemcitabine (Antineoplastic)
Carboxyphenylboronic acid
Aminophenylboronic acid
Tamsulosin (Antidysuria)
Tamsulosin (Antidysuria)
Tamsulosin (Antidysuria)
Transferrin
LC-MS: Hydroxybenzenedisulfonic acids
Chlorophenylboronic acid
LC-MS: Aryl and alkyldisulfonic acids
Transferrin
Methylphenylboronic acid
Transferrin
Transferrin
LC-MS: Arylboronic acids
Chlorophenylboronic acid
LC-MS: Alkylphosphates and alkylphosphonates
Photoinitiator
Photoinitiator
Fluorophenylboronic acid isomers
Trimebutine (Stomach medicine)
Trimebutine (Stomach medicine)
Bezafibrate (Hypolipidemic agent)
Bezafibrate (Hypolipidemic agent)
LC-MS: Cephem antibaiotics
Ceftriaxone (Cephem antibiotics)
LC-MS: Melatonin related compounds
LC-MS: Melatonin related compounds
LC-MS: Melatonin related compounds
Melatonin related compounds
Melatonin related compounds
LC-MS: Dobesilate (Vasoprotectives)
Dobesilate (Vasoprotectives)
LC-MS: Bilirubin (Heme metabolite)
Sulfasalazine (Antirheumatic)
Sulfasalazine (Antirheumatic)
LC-MS: Dobesilate (Vasoprotectives)
LC-MS: Dobesilate (Vasoprotectives)
Rutin (flavonoid glycoside)
Rutin (flavonoid glycoside)
LC-MS: Styrene urinary metabolites
LC-MS: Styrene urinary metabolites
Styrene urinary metabolites
Styrene urinary metabolites
Sibutaramine (Anoretics)
Sibutaramine (Anoretics)
Isomaltodextrin
Isomaltodextrin
LC-MS: Sibutaramine (Anoretics)
Adrenaline, lidocain (Local anesthetics)
LC-MS: Components in permanent wave lotion
LC-MS: Components in permanent wave lotion
LC-MS: Components in permanent wave lotion
LC-MS: Adrenaline, lidocaine (local anesthetics)
Adrenaline, lidocain (Local anesthetics)
Xylulose, xylitol, xylose
Pentoses
Quinoline, isoquinoline
Valganciclovir (Antiviral)
Valganciclovir (Antiviral)
Suplatast (Antiallergic)
Suplatast (Antiallergic)
Ambroxol (Expectorant)
Ambroxol (Expectorant)
Loxoprofen (Nonsteroidal anti-inflammatory drug)
Loxoprofen (Nonsteroidal anti-inflammatory drug)
Isatin derivatives
Indole derivatives
3,3'-Diaminobenzidine
LC-MS: Isocyanate metabolites
Aprepitant (Anti-emetic)
Aprepitant (Anti-emetic)
Entacapone (Antiparkinsonian)
Desloratadine (Histamine receptor antagonist)
Desloratadine (Histamine receptor antagonist)
Quinolinol isomers
Thymine, Ethyl ascorbic acid
Bilirubin (Heme metabolite)
LC-MS: didecyldimethylammonium chloride (Disinfectants)
Androstenedione biosynthetic pathway
LC-MS: Cyclic amino acids
LC-MS: Cyclic amino acids
Diosmin, Hesperidin (vascular protectant)
Mercaptopurine (Antineoplastic)
N,N'-Diphenylethylenediamine (nitrogen-containing ligand)
N,N'-Diphenylethylenediamine (nitrogen-containing ligand)
LC-MS: Cycloheximide (Glutarimide antibiotics)
LC-MS: Cycloheximide (Glutarimide antibiotics)
LC-MS: Cycloheximide (Glutarimide antibiotics)
LC-MS: Cycloheximide (Glutarimide antibiotics)
LC-MS: Cycloheximide (Glutarimide antibiotics)
LC-MS: Cycloheximide (Glutarimide antibiotics)
Celecoxib (Nonsteroidal anti-inflammatory drug)
Celecoxib (Nonsteroidal anti-inflammatory drug)
Bisacodyl (Laxative)
Bisacodyl (Laxative)
Monoterpeneketone
LC-MS: unsaturated chondro-disaccharides
LC-MS: Glyphosate, N-acetylglyphosate
LC-MS: Cyclosporin A (Antibiotics)
LC-MS: Nisin, Natamycin (Food preservatives)
LC-MS: Nisin, Natamycin (Food preservatives)
LC-MS: Nisin, Natamycin (Food preservatives)
Cycloheximide (Glutarimide antibiotics)
Cycloheximide (Glutarimide antibiotics)
Isothiazoline antibiotics
Isothiazoline antibiotics
Amphenicol antibiotics
Amphenicol antibiotics
Lignin
Lignin
Lignin
Pinaverium (Antispasmodic)
Pinaverium (Antispasmodic)
LC-MS: phosphoric acid, medronic acid, ethidronic acid
Humic acid
Humic acid
Chloronicotinic acid isomers
Chloronicotinic acid isomers
LC-MS: Chloromandelic acid isomers
Pitavastatin (Hypolipidemic agent)
Pitavastatin (Hypolipidemic agent)
Mesalazine (Anti-inflammatory) and isomers
Isostearic acid, Stearic acid
Isostearic acid, Stearic acid
Isostearic acid, Stearic acid
Isostearic acid
Azodicarbonamide (Foaming agent)
Phenylbutazone (Anti-inflammatory)
Phenylbutazone (Anti-inflammatory)
LC-MS/MS: Isomer separation of central metabolites using the multi-modal properties of a hybrid column
Clarithromycin (Macrolide antibiotic)
Clarithromycin (Macrolide antibiotic)
Antipyrine (Anti-inflammatory)
Antipyrine (Anti-inflammatory)
LC-MS: PPDs and HMMM (rubber additives)
Aminophenazone (Anti-inflammatory)
Aminophenazone (Anti-inflammatory)
Ganciclovir, Aciclovir (Antiviral)
Ganciclovir, Aciclovir (Antiviral)
LC-MS: Piperidone related compounds
PPDs (rubber antioxidant)
PPDs (rubber antioxidant)
PPDs (rubber antioxidant)
Mucin
Mucin
Mucin
Ifenprodil (Vasodilator)
Ifenprodil (Vasodilator)
Troxerutin (Vascular protectant)
Troxerutin (Vascular protectant)
LC-MS: Hindered amine light stabilizers
LC-MS: Hindered amine light stabilizers
Hindered amine light stabilizers
Hindered amine light stabilizers
Hydroxypropyl methylcellulose
Hydroxypropyl methylcellulose
Hydroxypropyl methylcellulose
Hydroxypropyl methylcellulose
Hydroxypropyl methylcellulose
Carbazochrome (Hemostatic) Troxerutin (Vascular protectant)
Carbazochrome (Hemostatic)
Carbazochrome (Hemostatic)
Carbazochrome (Hemostatic)
Carbazochrome (Hemostatic)
Carbazochrome (Hemostatic)
Carbazochrome (Hemostatic)
Carbazochrome (Hemostatic)
LC-MS: Electrolytes and additives of lithium-ion battery
LC-MS: Electrolytes and additives of lithium-ion battery
Edoxaban (Anticoagulants)
LC-MS: Anticoagulants
LC-MS: Pemafibrate (Antihyperlipidemic)
Pemafibrate (Antihyperlipidemic)
Pemafibrate (Antihyperlipidemic)
Olmesartan medoxomil (Antihypertensive)
Olmesartan medoxomil (Antihypertensive)
LC-MS: C-protected amino acids
Trimetazidine (Vasodilator)
LC-MS: Trimetazidine (Vasodilator)
Trimetazidine (Vasodilator)
Coumatetralyl (Coumarin Anticoagulant)
Coumatetralyl (Coumarin Anticoagulant)
Diphenadione (Indandione Anticoagulant)
Polyoxethylene Lauryl Ether (Nonionic Surfactant)
Polyoxethylene Lauryl Ether (Nonionic Surfactant)
Polyoxethylene Lauryl Ether (Nonionic Surfactant)
Diphenadione (Indandione Anticoagulant)
LC-MS: Organophosphorus Pesticides (3)
LC-MS: Organophosphorus Pesticides (3)
LC-MS: Organophosphorus Pesticides (3)
LC-MS: Organophosphorus Pesticides (3)
LC-MS: Organophosphorus Pesticides (3)
LC-MS: Organophosphorus Pesticides (2)
LC-MS: Organophosphorus Pesticides (2)
LC-MS: Organophosphorus Pesticides (2)
LC-MS: Organophosphorus Pesticides (2)
LC-MS: Organophosphorus Pesticides (2)
LC-MS: Organophosphorus Pesticides (1)
LC-MS: Organophosphorus Pesticides (1)
LC-MS: Organophosphorus Pesticides (1)
LC-MS: Organophosphorus Pesticides (1)
LC-MS: Organophosphorus Pesticides (1)
Flavonoids in Grapefruit Juice
Flavonoids in Grapefruit Juice
Flavonoids in Grapefruit Juice
LC-MS: Doxycycline (Antibiotic)
Chloromandelic Acid Isomers
Warfarin (Anticoagulant)
Warfarin (Anticoagulant)
LC-MS: Cyclic Mononucleotides
Turmeric Powder Extract
LC-MS: Paclitaxel (Antineoplastic)
Black Pepper Powder Extract
LC-MS: Neonicotinoid Pesticides
LC-MS: Neonicotinoid Pesticides
LC-MS: Neonicotinoid Pesticides
LC-MS: Neonicotinoid Pesticides
LC-MS: Neonicotinoid Pesticides
Paclitaxel (Antineoplastic)
Paclitaxel (Antineoplastic)
Alkylbenzenesulfonates (Anionic Surfactants)
Cinnamon Powder Extract
LC-MS: Triazine Herbicides
LC-MS: Triazine herbicides
LC-MS: Fosetyl, Ethephon, Phosphonic acid, Phosphoric acid
LC-MS: Fosetyl, Ethephon
LC-MS: Bialaphos, Glyphosate, glufosinate and Metabolites
LC-MS: Glyphosate, Glufosinate and Metabolites
LC-MS: Bialaphos, Glyphosate
LC-MS: Bialaphos, Glyphosate
Polysorbate 20 (Nonionic surfactant)
Polysorbate 20 (Nonionic surfactant)
Polysorbate 20 (Nonionic surfactant)
Polysorbate 20 (Nonionic surfactant)
Polysorbate 20 (Nonionic surfactant)
Aspirin/Lansoprazole (Antithrombotic/Antiulcerative)
Polysorbate 20 (Nonionic surfactant)
Fluvastatin (Hypolipidemic agent)
Fluvastatin (Hypolipidemic agent)
Polysorbate 20 (Nonionic surfactant)
Edoxaban (Antithrombotic)
Edoxaban (Antithrombotic)
Clopidogrel (Anti platelet agents)
Clopidogrel (Anti platelet agents)
Polysorbate 20, (Surfactant)
LC-MS: Acephate
LC-MS: Acephate
High Resolution Accurate Mass (HRAM) Analysis of "Magic" Mushroom Psychedelics
prohibited 14 colors for food (Artificial coloring)
prohibited 14 colors for food (Artificial coloring)
prohibited 14 colors for food (Artificial coloring)
prohibited 14 colors for food (Artificial coloring)
prohibited 14 colors for food (Artificial coloring)
prohibited 14 colors for food (Artificial coloring)
Imatinib (Antineoplastic)
Imatinib (Antineoplastic)
Imatinib (Antineoplastic)
LC-MS: N-nitrosoamines
LC-MS: N-nitrosoamines
Orange 2 (Artificial coloring)
12 Food Colors (Food additive)
12 Food Colors (Food additive)
Martius Yellow (Artificial coloring)
LC-MS: Artemisinin and related compounds
LC-MS: Artemisinin and related compounds
Acid Green 3 (Artificial coloring)
Uranine (Artificial coloring)
Acid Green 9 (Artificial coloring)
12 Food Colors (Food additive)
12 Food Colors (Food additive)
12 Food Colors (Food additive)
12 Food Colors (Food additive)
Acid Blue 1 (Artificial coloring)
Acid Violet 6B (Artificial coloring)
Orange 1 (Artificial coloring)
Acid Red (Food additive)
Light Green SF Yellowish (Artificial coloring)
Rose Bengal (Food additive)
Naphthol Yellow S (Artificial coloring)
Phloxine B (Food additive)
Eosin (Artificial coloring)
New Coccine (Food additive)
Ponceau 3R (Artificial coloring)
Allura Red AC (Food additive)
Ponceau SX (Artificial coloring)
Erythrosine (Food additive)
Ponceau 3R (Artificial coloring)
Amaranth (Food additive)
Tartrazine (Food additive)
Acid Blue 3 (Dye)
Sunset Yellow (Food additive)
LC-MS: Adenosine phosphates
Oligonucleotides (Oligothymidylic acid)
Fast Green (Food additive)
Basic Blue (Dye)
Brilliant Blue (Food additive)
Crystal violet (Dye)
Indigo Carmine (Food additive)
LC-MS: Tyrosinemia type 1 related compounds
Basic Violet 1 (Dye)
Leuco Malachite Green (Dye)
LC-MS: fluoroorganic acid
Fursultiamine (Vitamin B1 derivative)
Fursultiamine (Vitamin B1 derivative)
Pararosaniline (Dye)
Fexofenadine (Allergic rhinitis, Opioid receptor agonist)
Fexofenadine (Allergic rhinitis, Opioid receptor agonist)
Fexofenadine (Allergic rhinitis, Opioid receptor agonist)
Cholesteric Liquid-crystal materials
Teprenone (Anti-ulcer drugs)
Azoxybenzene (Liquid-crystal materials)
Nematic, Smectic Liquid-crystal materials
Nematic, Smectic Liquid-crystal materials
Nematic, Smectic Liquid-crystal materials
Picosulfate (Laxative)
LC-MS: Sucralfate (Anti-ulcer drug)
LC-MS: Distearoylphospatidylcholine (DSPC)
Picosulfate (Laxative)
Picosulfate (Laxative)
Alprazolam (Anti-anxiety)
Alprazolam (Anti-anxiety)
Tranexamic acid (Anti-inflammatory)
Tranexamic acid (Anti-inflammatory)
Glycyrrhizic acid (Anti-inflammatory)
Glycyrrhizic acid (Anti-inflammatory)
Drospirenone (Dysmenorrhea medicine)
Drospirenone (Dysmenorrhea medicine)
Bromhexine (Expectorant drug)
LC-MS: Bisphosphonates (Bone resorption inhihitors)
Cetylpyridinium (Disinfectant)
LC-MS: Chlormequat (Plant growth retardant)
LC-MS: Chlormequat (Plant growth retardant)
Pentoxyverine citrate (Antitussive)
Cetylpyridinium (Disinfectant)
Cetylpyridinium (Disinfectant)
Rebamipide (Gastrointestinal agent)
Rebamipide (Gastrointestinal agent)
Amlodipine besilate (Antidepressant)
Amlodipine (Antidepressant)
Amlodipine (Antidepressant)
Mosapride (Prokinetic)
Mosapride (Prokinetic)
LC-MS: Uridine isomer (psi-uridine)
Raloxifene (Osteoporosis agent)
Raloxifene (Osteoporosis agent)
Pioglitazone (Antidiabetic)
Pioglitazone (Antidiabetic)
Pentoxyverine citrate (Antitussive)
Methylhippuric acid isomers
Difluorobenzene isomers
Zaltoprofen (Anti-inflammatory, Cyclooxygenase inhibitor)
Zaltoprofen (Anti-inflammatory, Cyclooxygenase inhibitor)
Clotiazepam (Antianxiety, GABA-A receptor agonist)
Clotiazepam (Antianxiety, GABA-A receptor agonist)
Loperamide (Antidiarrheal, Opioid receptor agonist)
Loperamide (Antidiarrheal, Opioid receptor agonist)
Lomerizine (Antimigraine, Calcium channel blocker)
Lomerizine (Antimigraine, Calcium channel blocker)
Diazepam (Antianxiety, benzodiazepine derivatives)
Pranlukast (Antiasthmatic, Leukotriene receptor antagonist)
Nisoldipine (Antihypertensive, Calcium channel blocker)
Cresol isomers
Bromhexine (Expectorant drug)
Bromhexine (Expectorant drug)
Dexamethasone (anti-inflammatory drug)
Glycogen
LC-MS: Nucleoside triphosphate (NTP)
LC-MS: Nucleoside triphosphate (NTP)
Glycogen
SEC: Xanthan gum
SEC: Glycogen
Galactosylceramide from bovine brain
Remdesivir (RNA polymerase inhibitor)
Galactosylceramide from bovine brain
LC-MS: Quinolone antimicrobial
Galactosylceramide from bovine brain
Galactosylceramide from bovine brain
Galactosylceramide from bovine brain
Galactosylceramide from bovine brain
Lactoferrin, from bovin milk
LC-MS: Catechin Mixture from Green Tea
LC-MS: Catechins in Black Tea with tea bag
LC-MS: Catechin Mixture from Green Tea
LC-MS: Catechins in Black Tea with tea bag
LC-MS: Catechin Mixture from Green Tea
LC-MS: Catechins in Black Tea with tea bag
LC-MS: Hyperammonemia treatment (Lactulose)
Hyperammonemia treatment (Lactulose)
Fluoroquinolones
Fluoroquinolones
Fluoroquinolones
LC-MS: Catechins in Black Tea Beverage
LC-MS: Catechins in Black Tea Beverage
Oxolinic acid (fluoroquinolone)
Lomefloxacin (fluoroquinolone)
Enoxacin (fluoroquinolone)
LC-MS: Catechins in Black Tea Beverage
Ciprofloxacin (fluoroquinolone)
Norfloxacin (fluoroquinolone)
Ofloxacin (fluoroquinolone)
Enrofloxacin (fluoroquinolone)
Danofloxacin (fluoroquinolone)
Lipo-Oxytocin-1 (LOT-1)
LC-MS: HbA1c and AGEs related amadori compounds
LC-MS: HbA1c and AGEs related amadori compounds
Oral hypoglycemic drug (metformin)
Rheumatoid arthritis drugs
LC-MS: 4-Methylmidazole in Cola and Instant Coffee
LC-MS: 4-Methylmidazole in Dark Beer
LC-MS: Strong organic base catalysts
LC-MS: Methylmidazole isomers
LC-MS: Phosphorylated amino acids
LC-MS: Phosphorylated amino acids
LC-MS: Phosphorylated amino acids
LC-MS: Organophosphorus pesticides/herbicides
Favipiravir (RNA polymerase inhibitor)
LC-MS: Deoxyoligonucleotides
LC-MS: Deoxyoligonucleotides
LC-MS: Ivermectin (antiparasitic drug)
LC-MS: Ivermectin (antiparasitic drug)
LC-MS: Deoxyoligonucleotides
LC-MS: Nelfinavir mesylate (antiretroviral drug)
LC-MS: Nelfinavir mesylate (antiretroviral drug)
LC-MS: Chlorpheniramne maleate (antihistamine)
LC-MS: Chlorpheniramne maleate (antihistamine)
LC-MS: Inorganic anions
Group separation of rice bran oil components
LC-MS: N-nitrosoamines
LC-MS: Oligonucleotides (Oligothymidylic acid)
LC-MS: Oligonucleotides (Oligothymidylic acid)
LC-MS: Oligonucleotides (Oligothymidylic acid)
Non-porous ODS : Beer yeast tablet extracts
LC-MS: Sugar phosphates
Rizatriptan benzoate (treatment of migraine headaches)
Antibiotic (vancomycin)
Tizanidine (muscle relaxant)
Tadalafil
Eperisone (antispasmodic)
Etodolac (nonsteroidal anti-inflammatory drug, NSAIDs)
LC-MS: Plant hormones
SEC: Beer yeast extract tablets
LC-MS: Coenzymes (Nicotinamide adenine dinucleotides)
LC-MS: Organic acids in Soy sauce
Tipepidine hibenzate (Antitussive, Expectorant)
Tipepidine hibenzate (Antitussive, Expectorant)
Tipepidine hibenzate (Antitussive, Expectorant)
LC-MS: Amezinium methylsulfate (Antihypotentive drug)
LC-MS: Omarigliptin (Oral antidiabetic drug)
LC-MS: Oxalic acid
LC-MS: hydroxycarboxylic acids
Amantadine
Etodolac (nonsteroidal anti-inflammatory drug, NSAIDs)
Etodolac (nonsteroidal anti-inflammatory drug, NSAIDs)
Propiverine (Anticholinergic, Ca-antagonist, Antimuscarinic)
Propiverine (Anticholinergic, Ca-antagonist, Antimuscarinic)
Rizatriptan benzoate (treatment of migraine headaches)
Levofloxacin (new quinolone, antibiotics)
Levofloxacin (new quinolone, antibiotics)
Sudan Dye, impurities
Eperisone (antispasmodic)
Triterpene (squalene, squalane)
Phthalate esters
LC-MS: Omega-3 and Omega-6 fatty acids
LC-MS: Omega-3 and Omega-6 fatty acids
LC-MS: Omega-3 and Omega-6 fatty acids
Antibiotic (vancomycin)
Acid stability of Unison UK-C1
LC-MS: Omega-3 fatty acid ethyl esters
Tizanidine (muscle-relaxant) impurity
Tizanidine (muscle-relaxant)
Rizatriptan benzoate (treatment of migraine headaches)
LC-MS: Food preservatives
LC-MS: Varenicline (Smoking cessation adjuvant)
Tadalafil (phosphodiesterase type 5 inhibitor, PDE5I)
LC-MS: Food preservatives
Eperisone (antispasmodic)
Eperisone (antispasmodic)
LC-MS: Alcohol biomarkers (EtG, EtS)
LC-MS: Acetic acid and formic acid
LC-MS: Organic acids in Energy drink (Brand-M)
LC-MS: Ractopamine (veterinary drug)
LC-MS: Organophosphorus and quaternary ammonium pesticides/herbicides
LC-MS: Organic acids in Beer
LC-MS: Organic acids in Wine
LC-MS: Methylmalonic acid (sample solvent effect)
LC-MS: Sugar acids
LC-MS: Sulfonic acids and sulfuric acids
LC-MS: Uronic acid isomers
LC-MS: 44 Organic Acids Analysis (IEX mode)
LC-MS: Oxalic acid
LC-MS: Batch-to-batch reproducibility
LC-MS: Organic acids in Japanese Sake
LC-MS: Adenosine nucleotides and phosphoric acid
LC-MS: TCA (tricarboxylic acid) cycle / Citric acid cycle
LC-MS: Polyvalent acids (Normal-Phase Mode)
LC-MS: Intact Organic Acid Analysis (IEX)
Nitrovin (animal medicine)
Azulene
Rotigotine (Antiparkinsonian drug)
LC-MS: Selenoamino acids
LC-MS: Cysteine derivatives
LC-MS: Ascorbic acid and related compounds
LC-MS: Berberine in Powdered Coptis Rhizome
LC-MS: Alkaloids
Sodium alkyl sulfates (SAS)
LC-MS: Perfluoroalkyl acids (PFAA)
LC-MS: Aliphatic amines
LC-MS: Peptides (Angiotensin)
LC-MS: Organophosphorus pesticides/herbicides
LC-MS: Asymmetric / symmetric dimethylarginines (ADMA/SDMA) and related compounds
Benzethonium chloride, Benzalkonium chloride
Cold medicine compounds
LC-MS: Oxytocin (OXT, peptide hormone)
Acetaminophen and metabolite
Doxepin isomers
LC-MS: Doxepin isomers
Steric selectivity (isomers)
Steric selectivity
Basic compounds under acidic conditions
Cadenza CX-C18 batch-to-batch reproducibility
Paraben isomers
Paraben isomers
LC-MS: Antidepressant drugs under acidic conditions
Antidepressant drugs under acidic conditions
SEC: Ribonuclease A (RNase A), from bovine pancreas
LC-MS: Asymmetric and symmetric dimethylarginine (ADMA/SDMA) and related compounds
LC-MS: aminoglycoside antibiotics
LC-MS: biogenic polyamines
LC-MS: Urocanic acid and related amino acids
LC-MS: Standard Samples of Energy Drink Components
LC-MS: Energy Drink (Brand-M)
LC-MS: Energy Drink (Brand-R)
LC-MS: Carbonic anhydrase inhibitor (antiglaucoma drug)
LC-MS: Carbonic anhydrase inhibitor (antiglaucoma drug)
LC-MS: Carbonic anhydrase inhibitor (antiglaucoma drug)
LC-MS: Fe(III)-EDTA and Cu (II)-EDTA
LC-MS: EDTA and Related Compounds
LC-MS: Valinomycin (depsipeptide, antimicrobial)
LC-MS: Ionic Lquid (1-butyl-1-methylpyrrolidinium bis(trifluoromethylsulfonyl)imide)
LC-MS: Cereulide (depsipeptide, cytotoxin)
Metal-Free Column: phosphoserine
Metal Free Column: picolinic acid
Metal Free Column: Nucleoside triphosphate (NTP), Trinucleotide
Metal Free Column: Hydrocortisone phospate
Simultaneous detection of psychotropic phenylalkylamines in hair
Fat-soluble vitamins
Pentacyclic triterpenoid acid isomers (ursolic acid, oleanolic acid)
Silibinin (Silybin) diastereomers, major components of silymarin
LC-MS: Citrulline-NO cycle
LC-MS: 5-Aminolevulinic acid (ALA) and a precursor Glycine
SEC: Alkylbenzenesulonate (LAS)
SEC: Defatted soybean flour extract
LC-TOFMS: Urinary compounds
LC-TOFMS: Coenzymes
LC-TOFMS: Methylfolate
LC-TOFMS: Glutathione
LC-TOFMS: Cytosine compounds
LC-TOFMS: Creatine compounds
LC-TOFMS: Choline compounds
Inulin
Inulin
Polyacrylate
Polystyrenesulfonic acid
Polystyrenesulfonic acid
Polystyrenesulfonic acid
LC-MS/MS: Insecticides
SEC: Bovine serum albumin (BSA)
LC-MS/MS: Insecticide (Fipronil)
SEC-MS: alpha-Amylase, from Bacillus sp.
SEC: mAb (Anti-GFP, green fluorescent protein, Rat IgG2a)
SEC: mAb (Anti-GST, Mouse IgG2a-k)
SEC: mAb (Anti Derf II)
SEC: mAb (Anti-Human luteinizing hormone)
SEC: mAb (Anti Hexanoyl-lysine)
SEC: mAb (Anti alpha-Fetoprotein)
SEC-MS: Elastase, from Porcine pancreas
SEC: IgG, from human serum
SEC: Polylysine
SEC: Lipopolysaccharide (LPS)
SEC: Lectin (Concanavalin A)
SEC: PLGA, Poly(lactic-co-glycolic acid)
SEC: PLGA, Poly(lactic-co-glycolic acid)
SEC: Polylactide (PLA)
SEC: Polylactide (PLA)
SEC: Pectin
SEC: Mannan
SEC: Fucoidan
SEC: hyaluronic acid, sodium salt
SEC: kappa- and iota- Carrageenan
SEC: Cellulose Acetate (acetylcellulose)
SEC: Hydroxypropyl cellulose (HPC)
SEC: Carboxymethyl cellulose (CMC)
SEC: Dextran
SEC: Dextran sulfate, sodium salt
SEC: Poly-gamma-glutamic acid
SEC: Proteoglycan
SEC: Ovalbumin
SEC: Myoglobin, from equine skeletal muscle
SEC: Insulin, from bovine pancreas
SEC: Collagenpeptide
SEC: Alpha-lactalbumin, from bovine milk
SEC: Alpha-Casein, from bovine milk
SEC: Alpha-chymotrypsinogen A, from bovine pancreas
SEC: Xthantine oxidase (XOD), from Buttermilk
SEC: Beta - Glucosidase
Pullulan
SEC: Alpha - Amylase
Sunscreen compounds
NaCl (sodium chloride) in Ramen Soup
S-allyl-L-cysteine in Garlic Extract
Pantothenic acid in a nutritional supplement
Alkaloids, Matrine and Oxymatrine
Histamine
Ginsenoside
ephedrine, atropine
DMF (dimethyl formamide), DMSO (dimethyl sulfoxide)
Allicin and diallyl disulfide in Garlic
Alliin and S-allyl-L-cysteine in Garlic
LC-MS: Glutamyl-Valyl-Glycine
SEC-MS: Recombinant human serum albumin (rHSA)
SEC: Polyvinyl Alcohol (PVA)
SEC: Polyvinyl Acetate (PVAc)
SEC: Polyvinylpyrrolidone (PVP)
SEC: Monoclonal antibody (mAb)
SEC: Monoclonal antibody (mAb)
SEC: Hemoglobin
SEC: Polyethylene Glycol
SEC: Polystyrene
SEC: 20bp DNA Ladder
SEC: Glycosaminoglycans (GAGs)
SEC separation: Thyroglobulin (Tg)
SEC separation for proteins (column connection)
BSA (Bovine Serum Albumin) Monomer, Dimer
LC-MS: Flavonoids
LC-MS: Flavonoids
LC-MS: Flavonoids
LC-MS: Amino acids standard
LC-MS: Glutamyl-Valyl-Glycine
LC-MS: Taxifolin
LC-MS: Bromate and anions
LC-MS: 20 standard amino acids
LC-MS: Thyroid hormone
LC-MS: Thyroid hormone
LC-MS: Kynurenine / Tryptophan Ratio (KTR) of Human serum
LC-MS: Kynurenine / Tryptophan Ratio (KTR) of Human serum
LC-MS: Kynurenine / Tryptophan Ratio (KTR)
LC-MS: Orexin A and B
LC-MS: Orexin A and B
LC-MS: Orexin A and B
LC-MS: Kynurenine metabolism pathway
LC-MS: Amino acids standard
LC-MS: Nucleosides and bases (mobile phase pH)
LC-MS: Antipsychotics
LC-MS: Antipsychotics
LC-MS: Nucleosides and bases
LC-MS: Amino acids standard
Antibiotic (vancomycin)
LC-MS: SAH and SAM
LC-MS: antimigraines (selective serotonin agonists)
LC-MS: antimigraines (selective serotonin agonists)
LC-MS: Acidic compound (mobile phase pH)
Paraben isomers
LC-MS: antimigraines (selective serotonin agonists)
LC-MS: Insulin (Mobile phase pH)
LC-MS: Amyloid beta-peptide [Human,1-40] (Mobile phase pH)
LC-MS: Amyloid beta-peptide [Human,1-40] (alkali conditions)
LC-MS: Basic compound (mobile phase pH)
LC-MS: Alkaloids (alkali conditions)
Tricyclic antidepressants
Soybean protein
LC-MS: sugar alcohols
LC-MS: mono and disaccharides
Lipid A (Salmonella minnesota Re595)
Recombinant human serum albumin (rHSA)
Recombinant and biosynthetic human serum albumin (HSA)
Recombinant human serum albumin (rHSA)
LC-MS: retro-dipeptide isomers
LC-MS, Biochemistry/Metabolism, Amino Acids and Peptides
LC-MS: choline metabolites and related compounds
LC-MS: isoproterenol
LC-MS: carnitine related compounds
LC-MS: Amino acids in human serum (HClO4)
LC-MS: Amino acids in human serum (SSA)
LC-MS: dipeptides
LC-MS: Low-calorie sweeteners
LC-MS: Fungicides for citrus fruits
Efficient chromatographic separation of intact proteins derivatized with a fluorogenic reagent for proteomics analysis
LC-MS: Epinephrine and metanephrine
LC-MS: Synthetic polyamines
LC-MS: Biogenic polyamines
LC-MS: Method for simultaneous analysis of functional ingredients in rice bran oil
LC-MS/MS: Acetylcholine and d4-acetylcholine
LC-MS: Neuroblastoma related compounds
LC-MS: Neurotransmitters (2)
LC-MS: Neurotransmitters (1)
LC-MS: Catecholamines
LC-MS: Polyoxin D
LC-MS: 20 Amino acids and 5 isotopes (standard)
LC-MS: Adenosine phosphates (AMP,ADP, ATP)
LC-MS: 39 Amino acids (standard)
LC-MS: Peptides containing leucine isomers
LC-MS: Aspartame and diastereomers
LC-MS: Microcystins
LC-MS: Nicotine related compounds (3)
LC-MS: Nicotine related compounds (2)
LC-MS: Nicotine related compounds (1)
LC-MS: 20 Standard Amino Acids
LC-MS: 20 Standard Amino Acids
LC-MS: Ascorbic acid related compounds
Propagermanium
LC-MS: biogenic amines and precursor amino acids (3)
LC-MS: biogenic amines and precursor amino acids (2)
LC-MS: biogenic amines and precursor amino acids
LC-MS: Amino acids in serum (SSA)
LC-MS: Amino acid in human serum (HClO4)
LC-MS: Photo Acid Generators
LC-MS: 1min High Throughput Analysis Amino Acids
LC-MS: Homocysteine and relative compounds (3)
LC-QTOF/MS: Acyl carnitine
LC-MS: Homocysteine and relative compounds (2)
Homocysteine and relative compounds (recommended)
LC-MS: alpha-Disubstituted amino acids (2)
LC-MS: alpha-Disubstituted amino acids (recommended)
LC-MS: 20 standard amino acids (recommended)
LC-MS: Amino acids in yogurt
Oxoacids of arsenic
Sodium Halides
LC-MS: Lysinoalanine related compounds
LC-MS: Lysinoalanine related compounds
LC-MS: Amino acids in beer
LC-MS: Amino acids in white wine
LC-MS: Amino acids in green tea
LC-MS: Amino acids in bouillon of dried bonito
LC-MS: Amino acids in fermented milk drink
LC-MS: Amino acids in milk
LC-MS: Bisphosphonates (bone resorption inhibitors)
Oxoacids of notrogen
Oxoacids of chlorine
Oxoacid of iodine
Sodium Halides
High Throughput Reliable Quantitation of 25-hydroxyvitamin D in Serum by Offline Sample Preparation and a LC-MS/MS Instrument
LC-MS: Amino acids and water-soluble vitamins in carbonated beverage
LC-MS: Cysteic acid related compounds
A high throughput solid phase extraction method for vitamin B7 (biotin) from pooled human serum prior to mixed mode LC-MS/MS
LC-MS: Leucine isomers
LC-MS: Leucine isomers
LC-MS: Valine isomers (2)
LC-MS: Valine isomers
LC-MS: Threonine isomers
LC-MS: Histidine derivatives
LC-MS: Alanine isomers
LC-MS: Glutamic acid and GABA isomers
Batch-to-Batch Reproducibility (Intrada Amino Acid)
LC-MS: 20 standard amino acids (high resolution)
LC-MS: 20 standard amino acids (recommended)
Use of the Intrada Amino Acid column along with tandem mass spectrometry allows for separation and detection of all 20 standard amino acids in under 20 minutes. This column enables the separation of isobaric amino acids such as leucine and isoleucine.
The Intrada Amino Acid column is used to separate amino acids present within soy sauce
The Intrada Amino Acid column separates all 20 amino acids in under 15 minutes without requiring tedious pre or post labeling methods
The Intrada Amino Acid column sucessfully separates 55 amino acids and related compounds without requiring derivatization
The Unison UK-Amino column successfully separates adenosine and inosine, which are very similar in structure.
The Scherzo SM-C18 and Unison UK-Amino columns successfully separate the small, polar ascorbic acid related compounds in normal phase mode.
The Scherzo SS-C18 column provides better retention of Shikimic Acid than a standard C18 column.
The Unison UK-Phenyl column separates surfactants of different lengths better than a standard C18 column.
The Unison UK-Phenyl column effectively separates fluoroamphetamine and fluoromethamphetamine isomers with identical mass.
The Unison UK-Phenyl column is effectively able to separate triazolam and etizolam, which are very similar in structure.
Cadenza CW-C18, Unison UK-C18, and Unison UK-C8 are all able to resolve the very polar and charged Acetyl CoA and CoA, differing only in an acetyl group.
Oligopeptides (angiotensins)
Oligopeptides (angiotensins)
Oligopeptides (angiotensins)
The Scherzo SS-C18 column is effectively able to retain and resolve polar dipeptides.
The Cadenza HS-C18 column is able to retain organotin compounds with nice, sharp peaks.
The Scherzo SM-C18 and Scherzo SS-C18 column resolve very polar carboxylic acids that normally co-elute on a standard C18 column (Unison UK-C18).
The Scherzo SS-C18 column retains Prostaglandins the most, followed by Scherzo SM-C18 and Scherzo SW-C18.
Under neutral pH conditions, columns in the Unison and Cadenza series have similar retention and resolution properties.
Under acidic pH conditions, columns in the Unison and Cadenza series have similar retention and resolution properties.
On the Unison UK-C18 column, tetrahydrofuran gives better resolution of Prostaglandins than acetonitrile and acetone.
Acetonitrile and methanol have opposite retention properties in the separation of prostaglandins on the Unison UK-C18 column.
The Scherzo SM-C18 column is able to retain a highly polar compound (multiple phosphate groups) better than a standard C18 column.
The Scherzo SW-C18 column is able to retain compounds with multiple amine functionalities.
The Scherzo SS-C18 column is able to retain compounds with multiple amine functionalities.
The Scherzo SM-C18 column successfully resolves nucleotide triphosphates of similar structure.
The Cadenza CD-C18 HT 3 micron column shows comparable resolution to a sub-2 micron column, with much lower pressure.
The Cadenza CD-C18 HT 3 micron column shows better resolution between isopropylparaben and propylparaben than a sub-2 micron column, and the CD-C18 HT column also shows a higher plate count.
The Cadenza CD-C18 HT 3 micron column shows lower pressure, higher plate count, and higher resolution than a sub-2 micron column.
Tadalafil, Sildenafil, and Vardenafil are all polar small molecules that are easily separated on the Unison UK-C18 HT column. Not only are the slight structural differences between Sildenafil and Vardenafil recognized by the column, but it also separates all three compounds within 1.5 minutes.
Tannic acid
The Scherzo SM-C18 column can separate these two molecules, which would normally coelute on a standard C18 column.
The Scherzo SM-C18 and SS-C18 show excellent resolution of these small molecules, which normally coelute on a standard C18 column.
The Scherzo SS-C18 column shows improved resolution of arsenobetaine compared to a standard C18 column. The Scherzo SM-C18 and the Scherzo SW-C18 show similar retention of this zwitterion as the standard Unison UK-C18 column.
The Scherzo SM-C18 and the Scherzo SW-C18 show similar retention of these small molecules as the standard Unison UK-C18. However, the Scherzo SS-C18 shows the best resolution between these three compounds.
The Scherzo family columns can separate this glycopeptide with varying retention. The Scherzo SW-C18 has the least retention, followed by the Scherzo SM-C18, followed by the Scherzo SS-C18 which has the most retention.
The Scherzo SM-C18 and SW-C18 columns can separate this glycopeptide with varying retention. The Scherzo SM-C18 has less retention while the Scherzo SW-C18 has more retention.
The Scherzo SS-C18 column retains and separates glutamic acid and GABA better than a conventional C18 column
LC-MS/MS Application for non-opioid drugs in human plasma
Metabolites of toluene, xylene and stylene
Blowing agents (OBSH, TSSC) for plastic materials
Small, polar molecules like neurotransmitters are difficult to retain on a conventional C18 column like Unison UK-C18. Scherzo SS-C18 can retain these compounds much better than a standard Unison UK-C18 column, as well as resolve the peaks better. Conditions compatible with LC-MS
Unison UK-C18 column can separate out the small, polar molecule components of coffee bean extract due to the lower density of C18 ligands. The column can generate 219 peaks, which shows all of the components of the extract.
Both Unison UK-C18 and Scherzo SW-C18 can separate out components of coffee extracts, but Scherzo SW-C18 can resolve the peaks of caffeine and ferulic acid better.
The highly charged phosphate groups make separation of AMP, ADP, and ATP difficult on a conventional C18 column. Scherzo SW-C18 is able to elute these compounds effectively, in both ammonium acetate and ammonium phosphate buffers.
Both Scherzo SM-C18 and Scherzo SW-C18 can separate an acidic compound (Ibuprofen) and a basic compound (Chlorpheniramine) at the same time. Scherzo SW-C18 works better under gradient elution, whereas Scherzo SM-C18 works better under isocratic elution.
All of the columns listed can recognize the structural difference between these two isomers, and resolve them into two separate peaks.
Hyaluronic Acid
A deep gradient on the Presto FF-C18 column results in a nice, sharp peak for hyaluronic acid. More shallow gradients result in broader peaks that can better separate out conformational differences or MW recogntion.
Both Presto FF-C18 and Intrada WP-RP can elute this large protein. Intrada WP-RP shows sharper peaks, meaning it can better recognize its structural components than Presto FF-C18.
Peptide mapping using LC-FTMS
Cytochrome c
Serotonin related compounds
Histamine related compounds
Neurotransmitters
Oligonucleotides
Acetaminophen and metabolite
Acetaminophen and metabolite
LC-MS/MS Application for Naturally Occurring Anti-inflammatory Pyroglutamyl Peptide in Japanese Rice Wine
Ultra-high throughput LC-MS/MS analysis of drugs in blood plasma
Amyloid beta-protein
siRNA
Basic pharmaceutical compounds
Zwitterionic compounds
Zwitterionic compounds
Catecholamines
Endosulfan isomers
Endosulfan isomers
Endosulfan isomers
LC-ICP-MS analysis of Cr(III) and Cr(VI)
LC-MS analysis of phosphorus-containing amino acid type herbicides and their metabolites
Dextran Sulfate
Penicillin Antibiotics
Collagenpeptide
Farnesene isomers
LC-MS/MS analysis of chloramphenicol (CP)
LC-MS/MS analysis of [leuco]malachite green (MG, LMG)
LC-MS/MS analysis of clenbuterol (CBR)
LC/MS analysis of nitrofurans metabolites (AOZ, AMOZ, AHD)
LC/MS analysis of perfluorinated organic compounds (PFC's) in seawater
The effect of TFA modifier on peptide mapping
Exploring different C18 stationary phases for metabolites profiling
Hyaluronic acid, chondrotin sulfuric acid
Surfactants
Simulatneous HPLC/LT-ELSD Analysis of Organic and Phenolic Acids
Simulatneous HPLC/LT-ELSD Analysis of Water Soluble and Fat Soluble Vitamins
Simultaneous HPLC/LT-ELSD Analysis of Polyols, Mono-,Di- and Oligosaccarides
Peptide Mapping (50 C formic acid)
LC-MS/MS Application: Simultaneous determination of phytotoxins in urine
Protein separation on non-porous ODS column
Protein separation on non-porous ODS column
Scherzo is able to separate mandelic acid and dopamine, which coelute on a conventional C18 column (Unison UK-C18). This is possible because the ionic ligands recognize the small structural differences between the two compounds.
Catecholamine metabolites
Cold medicine compounds
Cold medicine compounds
Theaflavins
The effect of gradient slope and column length for alpha-lactalbumin separation
The effect of gradient slope and column length for cytochrome c separation
The effect of gradient slope and column length for thyroglobulin separation
The effect of gradient slope and column length for lectin separation
The effect of gradient slope and column length for ovalbumin separation
The effect of gradient slope and column length for BSA separation
The effect of gradient slope for insulin separation
The effect of gradient slope for angiotensin II serparation
Coumarins
The effect of gradient slope and column length for HSA serpation
Gradient mixer volume affecting HSA separation
Polyethylene glycol (PEG)
IgG from human serum
Monoclonal and polyclonal antibodies
Gradient Slopes affecting mAb separation
Plerixafor (Chemokine receptor antagonist)
Polyclonal IgG (from Human Serum)
Hemocyanin and hemoglobin
Starch, amylopectin, amylose (from potato)
Coumarins
Hyaluronic acid
Unsaturated Chondro-Disaccharides
Maltol, Ethyl Maltol
Zinc Pyrithione, Copper Pyrithione
Cations
LC-MS(MRM) Application for Monosaccharides
Organic acids (Anion exchange mode)
Cellulose acetate
Peptide mapping
Biodegradable polymer ( poly (DL-lactide) and poly (DL-lactide-co-glycolide) )
Biodegradable polymer ( poly (DL-lactide) and poly (DL-lactide-co-glycolide) )
Biodegradable polymer ( poly (DL-lactide) and poly (DL-lactide-co-glycolide) )
Urea and related compounds
Analysis of Water Soluble Vitamins using LCMS-2020
Coenzymes (Nicotinamide adenine dinucleotides)
Coenzymes (Nicotinamide adenine dinucleotides)
RP analysis of intact amino acids using Corona CAD
Improving of analysis time and peak recovery for saccharide separation
Saccharide analysis for beverages using Corona CAD
High sensitivity analysis for saccharides using Corona CAD
Plerixafor (Chemokine receptor antagonist)
Cetirizine (Antihistamine)
PEGylated protein (2)
PEGylated protein (2)
PEGylated protein
Cyclic mononucleotides (cAMP, cGMP)
Ribonucleic acid (RNA)
Proteoglycan
Amylose
Fucoidan
Mannan
Lectin (concanavalin A)
Bisphenol A
Polyamino acids
Dextrans
Surfactants
Mucopolysaccharides
Double-stranded DNA fragments
Poly DL-Lactide
Polystyrene
Polyvinyl acetate
Polyvinyl alcohol (PVA)
Polyethylene glycols (PEG)
Polyvinylpyrrolidone (PVP)
Hydroxypropylcellulose
Carboxymethylcellulose
Gelatin
Pullulan
Hyaluronic acid
Alginic acid
Chondroitin sulfuric acid, carrageenan
Lipopolysaccharide (from E.coli O127)
Pectin
Polyglutamic acid
Tocopherols and tocotrienols
Plasmid DNA
DNA from salmon spermary
Herbicide formulation (glyphosate)
Organophosphorous pesticides, quaternary ammonium herbicides
Alpha-carotene and beta-carotene
Diisononyl phthalate
Arsenic compounds
Chromium (III) nitrate and ammonium chromate(VI)
Sucralose by reversed-phase analysis
Sodium thiosulfate
Organic acids (2)
Phthalate esters
Aromatic carboxylic acids
Anti-hyperlipidemic drug in bovine serum (probucol)
Benzathonium chloride
Benzalkonium chloride
Organic Acids
Sodium Sulfite in Red Wine
Glyphosate
Purine bases
Polycyclic aromatic hydrocarbons
Aminoglycoside antibiotics
Methimazole and potential metabolites
Nojirimycin relative compounds
Hydroxyzine pamoate
Clemastine fumarate
Tipepidine hibenzate
Chlorpheniramine maleate
Levulinic Acid, Lactic Acid and methyl Esters
Adenosine Phosphates
Amino acids: normal phase
Amino acids: acidic condition
Amino acids: neutral pH condition
Basic compounds: Antidepressant drugs
Anserine and Related Compounds
Acetic Acid and Trihaloacetic Acids
Mononucleotides
Glutathiones
Sodium Chloride
Mevalonolactone and Mevalonic Acid
Organic Acids
Estradiol and Metabolites
LC-MS/MS Application for Saccharides
LC-MS/MS Application for Saccharides
Phytohormones
Phytohormones
Identification of sphingomyelin molecular species with LC-MS/MS
Zanamivir (Anti-flu medicine)
Oseltamivir phosphate (Anti-flu medicine)
Paroxetine HCl (Antidepressant)
Rilmazafone HCl (Benzodiazepine hypnotic)
Zopiclone (Nonbenzodiazepine hypnotic)
Codeine phosphate (Narcotic antitussive)
The Scherzo SM-C18 column shows excellent batch to batch reproducibility for anionic, cationic, and neutral compounds.
Comparison of elution characteristics between Scherzo SM-C18 and Unison UK-C18
The Scherzo SM-C18 column shows excellent batch to batch reproducibility for these small polar molecules.
Pranoprofen (Nonsteroid anti-inflammatory drug:NSAID)
Naftopidil (alpha1-receptor blocker)
Furosemide (Diuretic)
Menatetrenone (Vitamin K)
Mequitazine (Antihistamine)
Betamethasone (Antihistamine:Adrenal corticosteroid)
LC-Q-TOF-MS application for high-throughput non-targeted metabolomics with a hybrid ODS column
Water-soluble vitamins
LC-MS/MS Application for Sphingolipids (Sphinganine-1-PO4)
LC-MS/MS Application for Sphingolipids (Sphingosine-1-PO4)
LC-MS/MS Application for Sphingolipids (Sphingosine)
LC-MS/MS Application for Sphingolipids (Sphinganine)
LC-MS/MS Application for Sphingolipids (Ceramide)
Flavanone glycosides
Flavanone glycosides
Denatonium benzoate
Denatonium benzoate
Food preservatives (normal phase)
Sinigrin (normal phase)
Isothiocyanates of Brassicaceae (Cruciferae)
Isothiocyanates of Brassicaceae (Cruciferae)
Comparison with the eluents of acetonitrile and acetone for saccharides separation
LC-MS Application for Phospholipids
Substitution of organic solvent for reversed-phase
Reducing organic solvent consumption
Normal Phase Separation for Amino Acids
Aromatic Amino Acids
Sulfur-containing Amino Acids
Acidic Amino Acids
Hydrophilic Amino Acids
Aliphatic Amino Acids
Sorbitol, Mannose, Mannitol, Glucose
Mannitol, Glucose
Creatinine and Purine Metabolites
Lycopene
LC-MS/MS Application for 25-Hydroxy Vitamin D3
LC-MS/MS Application for Duloxetine and Ethyl Morphine in Whole Blood
Unsaturated Chondro-Disaccharides
Aliphatic Amines
Sudan Dyes
Malachite Green and Metabolite
Arabinose, Xylose, Mannose, Glucose
Cyclic Mononucleotides
Acrylic Monomers
Acrylamide and Methachrylamide
Acrylic Monomers
Propranolol
Coenzymes (Nicotinamide adenine dinucleotides)
Adenosine Phosphates (AMP, ADP, ATP)
Sugar Phosphates
Sugar Phosphates
Standard PA-Sugar Chains
Standard PA-Sugar Chains
Standard PA-Sugar Chains
Standard PA-Sugar Chains
Standard PA-Sugar Chains
DAABD-proteins from breast cancer cells
Epilactose, Lactulose, Lactose
Melamine & related compounds
Melamine & Cyanuric Acid
Antibiotic (Vancomycin)
Antibiotic (Tylosin)
Antibiotic (Rifampicin)
2-AA labeled Fetuin Oligosaccharides
Nojirimycin Relative Compounds
Deoxynojirimycin, Glucose
IgG mAb by reversed phase analysis
Alpha-keto acids
Antibiotic (Erythromycin)
Polypeptide Antibiotic (2) - Polymyxin B
Aminoglycoside Antibiotics
Microcystins
Anthocyanins
NDA-amino acids
Acyclovir and Lactose
PQQ: pyrroloquinoline quinone (Normal Phase)
Microcystins
Microcystins
pH Durability of Cadenza CW-C18
Xanthines and Metabolites
Xanthines and Metabolites in Bovine Serum
Xanthines and Metabolites
Batch-to-batch reproducibility of CW-C18
PFAAs in Bovine Serum
PFAAs
LC-MS/MS Application -Tetracycline Antibiotics
Tetracycline antibiotics
5-Fluorouracil and Related Compounds
Inulin type oligosaccharides
Fructooligosaccharides
Nucleosides and Bases
Mono-, Disaccharides and Sugar alcohols(2)
Arabinose, Xylose, Mannose, Galactose, Glucose
Antioxidants
Voglibose, Acarbose
Retention and hydrophobic properties of Cadenza CW-C18
Basic Interaction of Cadenza CW-C18
Polypeptide Antibiotic, bacitracin
Basic Compounds: Antidepressant drug
LC-MS/MS Application - Steroid Hormones and Metabolites
LC-MS/MS Application - Organophosphorous Pesticides
Disopyramide in PVP Aqueous Solution
The Unison UK-Amino column shows excellent retention of nicotinic acid in both normal phase and anion exchange modes.
The Unison UK-Amino column shows excellent recognition of both the oxidized and reduced forms of glutathione.
The Cadenza HS-C18 column shows excellent exclusion of the large polymer HPC from the main sharp peak, verapamil.
Cefalexin in CMC-Na Aqueous Solution
Lidocaine in CMC-Na Aqueous Solution
Sulfamethoxazole in Alginate Aqueous Solution
Calcitonin, salmon
Calcitonin in Gelatin Aqueous Solution
Indomethacin in gelatin aqueous solution
HT performance with wide-pore ODS phase
Tween 20 in IgG solution
Halo acetic acids
Sucrose, lactose, maltose
Polyethylene glycol # 2000, 6000, 12000
PEG can be separated by both reversed phase and normal phase chromatography. Reversed phase using the Cadenza CW-C18 column gives baseline resolution as well as better run time.
Nicotine derivatives and metabolites can be separated by both reversed phase and normal phase chromatography. Reversed phase gives better run time.
Sulfamic acid and cyclamic acid can be separated by either reversed phase or normal phase chromatography. Reversed phase gives better peak shape while normal phase gives better run time.
Unison UK-Amino is able to separate amino acid-like molecules with good resolution.
Cadenza HS-C18 successfully separates out small molecules like Estradiol and metabolites from bovine serum. The sample chromatogram looks almost identical to the standard chromatogram.
Many Cadenza and Unison columns achieve excellent resolution with beta-Estradiol 3,17-disulfate and 17beta-estradiol despite their similar structures.
Unison UK-Amino separates Angiotensin III and Angiotensisn II better than a standard reverse phased column.
Unison UK-Amino column separates small molecule low-calorie sweeteners with excellent resolution.
Unison UK-Amino and Cadenza CD-C18 provide different selectivity for cephem antibiotics due to the difference in the stationary phase.
Unison UK-C18 successfully separates methylated arginines of similar structure. Compounds are pre-column derivatized to enable fluroescence detection.
Unison UK-C18 successfully separates nitroNE, nitroE, and nitroDA. Detection is via post-column derivatization.
The Unison UK-Amino column selectively separates Q3G and Q3GA although they are almost identical in structure.
The Unison UK-Amino column simulateously analyzes flavenoids of similar structure. The hydroxyl groups on the molecules interact with the stationary phase.
The Cadenza CW-C18 column effectively separates triarylmethane ink dyes because of chelating properties.
Cadenza CW-C18 and Cadenza CL-C18 have different selectivities for double-stranded DNA. CW-C18 is a wide pore column that elutes the molecules earlier than the CL-C18, which is selective via its exposed silanol groups.
Opiates of similar structure can be separated and analyzed by LC-MS. For example, morphine and oxymorphone are very similar but are resolved into two separate peaks.
When using the Unison UK-Amino column, THF can better separate cellobiose and cellobiitol than acetonitrile.
Unison UK-Amino separates mononucleotides of similar structure. For example, dGMP and GMP are resolved even though they differ in only a single hydroxyl group.
Unison UK-Amino column separates catecholamines of similar structure using normal phase/anion exchange mode.
Unison UK-Amino is able to separate inositol (an acidic compound) in normal phase/anion exchange mode. This column recognizes inositol from a mixture containing a variety of components.
Unison UK-Amino column separates out taurine in a drink mixture.
Vitamin B6
Rare sugars
Mandelic acid and related compounds
Stevia sweeteners
Essential oils
Essential oils (peppermint)
Xylooligosaccharides
Galactooligosaccharides
Fructooligosaccharides
Gentiooligosaccharides
Isomaltooligosaccharides
Organic acids
Maltooligosaccharides
Chitosanoligosaccharides
Hippuric acids
Igepal CO-720
Triton X-100
Sialyllactoses
Dehydroascorbic acid and related compounds
Catechins and flavonoids
Creatine and metabolites
LC-MS of marajuana and its metabolite in blood
Trisaccharides
Sucrose isomers
Hexoses
Amino sugars
Sialic acid and uronic acids
Glucose and its oxidents
Fatty acids
Fat soluble vitamins
Basic amino acids
Pentoses
Glucose disaccharide isomers
Cholesterol and steroid hormones
Mono, disaccharides, and sugar alcohols
Steroid Hormones
Steroid Hormones
Galactose and glucose
Sucrose and lactose in cafe au lait
Arabinose, galactose, maltitol
Steroids
Unison UK-Amino batch to batch reproducibility
Ascorbic and and isoascorbic acid
Normal phase and anion exchange mode
Sorbitol, glucose, malitol, maltose
Sugar Alcohols
LC-MS/MS Water Soluble Vitamins
Branch chained amino acids
Cyclodextrins
Water soluble vitamins
Sugar alcohols
Tocopherols
Laminariorigosaccharides
Monosaccharides
Unison UK-Amino aqueous durability
Minoxidil and metabolite
Minoxidil and metabolite in bovine serum
Anion surfactants
Anion surfactants
Anions
Anions
Water soluble vitamins in bovine serum
Antieptileptics in bovine serum
Digitalis glycosides in bovine serum
Polyphenol, berry
Bovine milk
Caffeine in the Caffe Latte
Hemoglobin (human) tryptic digest
Protein exclusion on Cadenza HS-C18
Proteins
Verapamil
PAHs
Terphenyl related compounds
Dinitrobenzene
phthalonitriles
NBD-amino acids from rat plasma
Flavonoids
Flavonoids
LC-CAD cycloamylose
Morantel Citrate
HT sulfonamides
Aromatic boronic acids
Bovine serum
Lactferrin
Hemoglobin
Thyroglobulin
Beta-Glucosidase
Waters soluble vitamins
Water soluble vitamins
Anti-HIV nucleosides
Positional Isomers on CL-C18
Separation Properties of Polycyclic Aromatic Compounds on CL-C18
Parasympatholytics
Interferon
Interferon
EDTA-Chelates
Pi-dipole interaction on CL-C18
Sulfonamides
Sulfonamides
Causative Substances of Urolithiasis
NSAIDs
Separation properties for Neutral Compounds on CL-C18
Electrostatic Interaction on CL-C18
Basic interaction of CL-C18, CD-C18, and UK-C18
pH durability of CL-C18
Batch to batch reproduciblity of CL-C18
Ingrediants in eye drops (allantoin and chlorpheniramine, maleate)
LC-MS halo acetic acids
Separation properties of basic compounds on CL-C18
Separation properties for acidic compounds on CL-C18
Retention behavior of polar compounds
Pyromellitic acids
Halo acetic acids
Stevia sweeteners
Fat soluble vitamins
Agricultural chemicals
Agricultural chemicals
Agricultural chemicals
Agricultural chemicals
Agricultural chemicals
Agricultural chemicals
Agricultural chemicals
Enrofloxacin
Chlorophyll and carotenoid
LC-ELSD of taurine and water soluble vitamins
Separation of creatine and related polar metabolites with 100% aqueous mobile phase, using the UK-C18, which excels in the separation of highly polar compounds.
Comparison of several reverse phase columns in the high-speed separation of fat-soluble vitamins.
Analysis of components of Shoseiryuto, an herbal medication, including paeoniflorin and ephedrine.
Four synthetic antibacterial veterinary medications were separated using various columns. Using gradient elution and TFA modifier, the best separation was achieved using a phenyl and C8 phase.
Analysis of the annular peptide antibiotic bacitracin using various reverse phase columns. Each column produces excellent peaks using gradient elution and TFA modifier.
Analysis of the annular peptide antibiotic colistin, which targets the plasma membrane of gram negative bacteria, using various reverse phase columns. All columns achieve excellent separation of colistin isotomers using gradient elution and TFA modifier.
Analysis of the macrolide antibiotic spiramycin using various reverse phase columns. Each column produces a sharp peak with TFA mobile phase.
Analysis of the macrolide antibiotic erythromycin using various reverse phase columns. Each column produces a sharp peak at neutral pH.
Analysis of salinomycin, a common antibiotic additive to animal feed. Note the incredible peak produced by the UK Phenyl column.
Analysis of lasalocid, a common antibiotic additive to animal feed, in acid. Each column produces an excellent peak.
Analysis of the antibiotic oxytetracycline, which impedes protein synthesis, using various reverse phase columns. Excellent peaks are produced by all columns in acidic conditions.
Analysis of penicillin, which impedes synthesis of the bacterial cell wall, using various reverse phase columns. Under acidic conditions all columns produce excellent peaks.
Reverse phase separation of the gram negative antibiotic lincomycin in acid produces an excellent peak.
Analysis of the synthetic veterinary antibiotic thiamphenicol, which impedes protein synthesis, under neutral pH. The C18, C8 and Phenyl columns all produce excellent peaks.
Analysis of the anthelminthic veterinary drug levamisol. Our reverse phase column with superior end-capping produces excellent peaks under neutral conditions.
Analysis of the veterinary antimicrobrial oxolinic acid produces excellent peaks with various reverse phase columns.
Analysis of nifurstyreneate monosodium salt, a veterinary antimicrobial nitrofuran used on fish, using various reverse phase columns.
The reverse phase separation of the hydrophillic organic solvent dimethyl sulfoxide (DMSO) is difficult. However, our silica columns make a nonaqueous normal phase separation possible.
Aniline, methylaniline and dimethylaniline separation with UK-C18.
500fg of Coenzyme Q10 can be quantitated by utilizing our 3um C8 column and a sensitive LC-MS/MS detector.
25fg of the calcium antagonist diltiazem HCl can be quantitated by utilizing our 3um C8 column and a sensitive LC-MS/MS detector.
2.5pg of the disinfectant chlorhexidine are measured with an LC-MS/MS analysis using our 3um C8 column.
Analysis of enzymatic reaction using a high throughput 10 mm column.
Our 10 mm long column can be used instead of a conventional 20-35mm column, performing high-speed separation in approximately 20 seconds while reducing column length. Furthermore our 10mm column has an impressive lifetime of over 2000 injections.
Analysis of 6 non-steroidal anti-inflammatory drugs under standard LC-MS conditions.
The effect of electrostatic interaction on retention. Hydrophobic interaction, which depends on hydrogen bonding capacity and dipole-dipole interaction, affects the retention time of analysis on different columns.
Separation of synephrine, found in the fruit of the Sour Orange Tree, and and octopamine, which operates on the sympathetic nervous system.
Analysis for antioxidants of plastics in food.
Separation of the cardiac agent digitalis glycoside and its aglycon.
Analysis of coenzyme Q10, a dietary supplement used for its antioxidant action, with various columns.
Analysis of hinokitiol, a compound for whose antibacterial and other physiological properties have been observed.
Separation of UDP-sugars, intermediates in sugar chain synthesis, the molecular structure of which differs only in the sugar group.
Reverse phase analysis of the highly polar compound betaine, which is quite difficult to retain in normal phase analysis.
Separation of short chain cable fatty acids without modifying the functional group.
Detection of the alkaloids α- Solanine and α- Chaconine is difficult using UV radiation, but possible with MS analysis.
Analysis of theanine, a flavorful component of many green teas on the market.
Separation of aromatic sulfonate using a volatile ion pair reagent.
Loading capacity of our versatile 20mm column is demonstrated at the laboratory level.
Normal phase analysis of the synthetic sweetener saccharine.
Normal phase separation of the neurotransmitter GABA.
Simultaneous analysis of compounds involved in the synthesis of andrenal corticosteroids.
Separation of the structurally similar antifungal drugs econazole and miconazole.
This analysis of xanthine oxydase related compounds includes separation of its substrate, product and inhibitor.
Analysis of ATP, ADP and AMP in aqueous normal phase using a silica column.
Reverse phase analysis of purine nucleotide metabolites, including uric acid and allantoin.
Normal phase analysis of purine nucleotide metabolites, including uric acid and allantoin, using a silica column.
Analysis of catechin enriched green tea using a semi micro column.
Reverse phase separation of the highly polar compounds uracil and fluorouracil, which is an anti-cancer drug.
Gradient elution of cobalamin.
Analysis of the highly polar catecholamines. The ion pair reagent, not included, is separated by the mobile phase.
Normal phase separation of acrylamide, the presence of which in common foods has caused health concerns.
Separation of highly polar nucleic acid bases in normal phase mode due to high organic solvent density.
The polar compound L-Carnitine, analyzed in both normal and reverse phase modes.
Separation of plant sterols, whose similar structures make separation difficult, using our high resolution column.
Normal Phase and Reversed Phase
Aqueous normal phase separation of nucleosides using a silica column.
Separation of the difficult to separate group of isomers known as tocopherols in reverse phase mode with a silica column.
Analysis of antipyretic analgesics.
Analysis of highly polar vitamins under normal and reverse phase modes.
Analysis of a vitamin derivative under normal and reverse phase modes.
Analysis of an antioxidant food additives.
Analysis of vitamin in tablet form.
The highly polar water soluble vitamin is retained and separated in normal phase mode.
Analysis of phenylenediamine type organic EL materials.
Analysis of vitamin B6 with neutral mobile phase in reverse phase mode.
Analysis of vitamin B1 with neutral mobile phase in reverse phase mode.
For analysis of ascorbic acid and related compounds, our 3um UK-C18 and 5um US-C18 can perform equivalent separations at high speed.
Separation of ascorbic acid and related compounds in aqueous normal phase with a silica column.
For tryptic digest of casein, our 500mm column produces almost 40% more peaks than does a conventional 3um 250mm ODS column.
In comparison with the 500mm column, our 3um 250mm separates with high efficiency.
Caproic acid and its methylvaleric acid isomers are separated with high resolution using our 500mm long column.
The 500x4.6mm column shows marked separation efficiency in comparison with the 5um ODS column.
The 500x4.6mm column delivers a high number of theoretical plates at a low flow rate.
The 500x4.6mm column delivers a high number of theoretical plates under moderate pressure.
The 500x4.6mm column performs with equal or greater efficiency than that of two connected 250mm columns.
Analysis of catechin additives to green tea with Unison UK-Phenyl.
Analysis of catechin additives to green tea with Unison UK-C18.
Analysis of catechin additives to green tea with Cadenza CD C18.
Separation of isomers of the polymerization inhibitor methoxyphenol.
Separation of isomers of the polymerization inhibitor hydroquinine.
Rapid analysis of ascorbic acid derivatives, including nicotinamide, under basic conditions.
Analysis of Isoflavones 4 in ammonium acetate.
Analysis of isoflavones 3 in ammonium acetate.
Analysis of isoflavones 4 in ammonium acetate. (Should be 2 according to TI)
Simultaneous analysis of 15 types of isoflavones with gradient elution.
Analysis of methyl valeric acid and other caproic acid isomers, comparing separation by column.
LC-MS analysis of volicitin related compounds.
Analysis of pyrethrin, an active ingredient in painted daisies.
Analysis of purine nucleotides under LC-MS conditions.
Reverse phase analysis of dye-labeled urea, a highly polar compound.
Simultaneous analysis of Citric Acid Cycle compounds using our phenyl column.
Simultaneous analysis of Citric Acid Cycle compounds using our UK-C18 column.
Simultaneous analysis of Ornithine Cycle comounds using our UK-C18, which has affinity for highly polar compounds.
Analysis of PQQ, which has recently been identified as a possible vitamin in mammals.
High-speed separations with Unison UK-C8 150mm column compared with a 5um 250mm column popular on the market.
Demonstrates the batch-to-batch reproducibility of UK-Phenyl with 3um phenyl packing material in three trials.
Demonstrates the batch-to-batch reproducibility of UK-C8 with 3um octyl packing material in three trials.
Unison UK-C18 batch to batch reproducibility
Demonstrates batch-to-batch reproducibility of US-C18 with 5um ODS packing material in three trials.
The 75mm Cadenza column outperforms a conventional 150mm column with higher sensitivity and low solvent use.
Achieve higher speeds with the Cadenza 150 mm column than with a conventional 250mm column.
Analysis of copper chlorophylline, a chlorophyll derived food additive.
Cadenza's high theoretical plate numbers and impressive selectivity show the column's efficiency in steroid separations.
Demonstrates the pH durability Unison stationary phase series (UK-C18, UK-C8, UK-Phenyl)
Differences in ODS stationary phase interactions between Unison and Cadenza.
Comparison of internal diameter in the reverse phase separation of oligo nucleotides.
Retention properties of polar compounds
Comparison of elution quality between our high polar affinity ODS Unison column and high resolution Cadenza Column.
High-speed detection with 0.1ppm volatile mobile phase of the golf-course environmental pesticides Asulum and Thiuram.
Oxine-copper
Superior separation of US-C18 compared to competitor columns.
Comparative separation of organic acids with various stationary phases of the Unison series.
Comparison of 5um column separation of nucleic acid bases. Unison US-C18 demonstrates excellent performance.
Comparative retention of the highly polar compound acrylamide in the Unison series using 100% aqueous mobile phase.
Comparative elution between stationary phases in ammonium acetate.
Analysis using the C8 column.
Analysis using the Phenyl column.
Highly sensitive analysis using our 3um column with 1mm internal diameter.
High-speed analysis using our 3um column with 1mm internal diameter.
High resolution analysis using 250x2.0mm UK-C18.
High-speed analysis using our 50x2.0mm UK-C18.
High-speed analysis using our 75x2.0mm CD-C18.
High-speed analysis using our 50x2.0mm CD-C18.
Highly sensitive analysis using our 250x1.0mm CD-C18.
Highly sensitive high-speed analysis using our 75x1.0mm CD-C18.
Nonaqueous reverse phase analysis of purified fish oil including DHA glyceride.
High sensitivity LC-MS analysis of 1pg of capsaicin and its analog dihydrocapsaicin.
High sensitivity LC-MS analysis of 100fg of DEET, a component of pesticides.
High sensitivity LC-MS detection of 500fg of ginko related substances.
High sensitivity LC-MS detection of 5pg of the environmental hormone octyl phenol.
500 uL injection of eluent into a 2mm internal diameter column under optimal conditions.
Unison offers high performance in 100 percent aqueous elution, where conventional ODS columns lose retention.
Our phenyl column offers distinct selectivity in the separation of constitutional isomers when compared to conventional ODS columns.
Our C8 column can offer more balanced high speed separation or different selectivity than can an ODS column.
High throughput LC-MS analysis of local anasthetic and anti-arrhythmic drugs.
Separation of nucleotides used to rate freshness in seafood.
Retention of underivitized amino acids by ODS column.
Retention of underivitized amino acids by ODS column.
Retention of underivitized amino acids by ODS column.
Our 5um US-C18 delivers a satisfactory peak in the separation of anti-allergy medication at neutral pH.
High-speed analysis of basic anti-allergy medications with 3um UK-C18 column at neutral pH
3um UK-Phenyl delivers a sharp peak in high-speed mobile phase analysis at neutral pH
3um UK-C8 delivers a sharp peak in high-speed mobile phase analysis at neutral pH
Cadenza CD-C18 is ideal for LC-MS analysis of myoglobin tryptic digest.
Cadenza produces peaks for difficult to separate impurities.
Cadenza withstands over 3000 runs of gradient analysis under optimal conditions.
Gradient analysis of food dyes, including Rose Bengal and erythrosin
Phenyl's high-speed analysis of basic vascular medications.
Our 250 x 4.6 mm columns can obtain high theoretical plate counts at low flow rates with low back pressure.
Detection of DNP converted aldehydes from mouse liver homogenate.
Comparison of internal diameter in the high-speed separation of fungicide for citrus fruits.
Comparison of elution types in super high-speed separations using 30 x 3.0 mm
Using our 30 mm column, analysis is possible in 30 seconds.
Simultaneous high-speed analysis of indoor air contaminants.
Cadenza's high resolution allows the separation of 8 types of anthocyanin.
Our high resolution column shows durability after 5000 runs at optimal conditions.
Highly sensitive gradient analysis using our semi-micro column.
Cadenza CD-C18 demonstrates pH stability in comparision with conventional ODS columns.
Separation of the green tea antioxidant polyphenol.
Highly sensitive analysis of the water soluble vitamin folic acid.
Cadenza delivers satisfactory peak form for difficult to separate antibiotics.
Cadenza maintains its efficiency with highly sensitive high-speed analysis and low solvent use.
Cadenza's separation efficiency is superior in a peptide BSA/trypsin digest.
Cadenza's separation efficiency is superior in a peptide BSA/trypsin digest.
FAB-MS analysis of D-amino acid containing peptides.
10pg of beta-estradiol detected.
Analysis of creatine in chewing gum
Comparitive column data showing Cadenza's superiority in molecular recognition.
0.5mg/g pf Curcumin detected through high sensitivity and high resolution.
Cadenza produces 134 peaks in analysis of components of lavender oil.
Cadenza is superior in recognition of varied degrees of polymerization in molecules.
Separation of p-dichlorobenzene and isomers, which are possible causes of "Sick House Syndrome"
Separation of inosinic acid, a flavor enhancer.
Analysis of DNP labeled formaldehyde, one of the causes of "Sick House Syndrome," in indoor air sample.
Comparison of peaks in the separation of fullerenes.
Highly sensitive analysis of fullerenes and higher fullerenes with semi-micro columns.
Analysis of impurities in hexane solvent differs depending on the grade.
High speed separation of low calorie sweeteners.
Analysis of lecithin in cyclohexane mobile phase.
Comparitive analysis of different components of ukon. The spring yukon has many more components than does the purple yukon.
Higher efficiency with the all-purpose 150 x 4.6mm column.
Cadenza's separation is superior to that of two conventional ODS columns back to back.
Cadenza's separation is superior to that of two conventional ODS columns back to back.
Cadenza's separation is superior to that of two conventional ODS columns back to back.
Cadenza's separation is superior to that of two conventional ODS columns back to back.
High speed separation of benzoic acid and sorbic acid in soy sauce.
Using our Cadenza 3um column, high-speed charge separation of food preservatives is possible.
High-speed separation of adenosine nucleotides.
High speed separation of phthalic acid isomers using short columns.
This polar hydrocarbon can eluate with low use of solvent, in this case methanol.
High-speed separation of the many components of pepper.
High speed separation of low to highly polar components of a vitamin preparation.
Analysis of the components of two types of olive oil, including triglyceride.
Complete resolution of the difficult to separate cresol isomers is possible with addition of beta-cyclodextrin.
High-speed separation of four agricultural chemicals
High-speed separation of three agricultural chemicals
High-speed separation of two agricultural chemicals
High-speed analysis of one agricultural chemicals
Our high resolution 3um semi micro column is powerful enough to separate out 13 different aldehydes.
Ranging from 2-4.6 mm internal diameter, our columns deliver similar efficiency in the separation of formaldehyde and acetaldehyde.
High speed separation of blue, yellow and red pigments.
Complete separation of cis and trans isomers of oleic acid
High speed separation of components of cold medication, with low solvent use.
Cadenza's 3um particle size revolutionizes columns length, speed and separation efficiency.
High speed separation of tocol and tocopherol, vitamin E related compounds.
Precise separation of compounds related to estrogen, the female sex hormone.
Separation of hippuric acid, a metabolite of toluene and xylene. Cadenza can recognize positional isomers of methyl hippuric acid as well.
Cadenza CD C18, at half the length of conventional 5um ODS columns, can deliver even better high speed separation.
Cadenza CD-C18 offers higher separation efficiency for basic compounds than possible with conventional columns.
High speed LC-MS separation of nivaldopine and nisoldipine at half the length of conventional columns.
Cadenza CD C18 offers superior batch-to-batch reproducibility.
Quantitative LC-MS/MS analysis of polyamines and their metabolic precursors in lung tissue
A Systematic Approach to Development of Analytical Scale and Microflow-based LC-MS Metabolomics Methods to Support Drug Discovery and Development
Applications of a novel hydrolysis system for deconvolution of cyclotides on a bead and super rapid amino acid analyses
Imtakt Product Comparisons: Product Descriptions
Imtakt Product Comparisons: Basic compounds under acidic conditions
Imtakt Product Comparisons: Steric Selectivity
Imtakt Product Comparisons: Basic Interactions
Compact mass spectrometer (CMS) analysis of uniformly 13C-labeled amino acids to identify authentic therapeutic drugs and protect against counterfeits
Towa Pharmaceutical Cadenza HS-C18 Method Validation Presentation
A Proposed Strategy for the Detection of Metabolic Disorders: High Resolution Screening with Reflex to Targeted Quantitation by Tandem Mass Spectrometry
The world's first specialty HPLC column for the analysis of amino acids without derivatization using LC-MS
Amino acids and metabolites/derivatives analysis without derivatization using a novel mixed-mode column
Simultaneous analysis of 15 water-soluble vitamins in beverages and dietary supplements with multi-mode ODS column using LC-MS/MS
High Throughput simultaneous analysis of 39 amino acids in various foods without derivatization using LC-MS/MS
Solid Phase Extraction and Analysis of THC and Carboxy-THC from Whole Blood using a Novel Fluorinated SPE Sorbent and Fast LC-MS/MS
An Evaluation of a Multi-Mode Stationary Phase for HPLC Separations Using a Multi-Component Test Mix
Advantage of a New Generation of Evaporative Light-Scattering Detectors: Universality, Higher Sensitivities and Cost-Effectiveness for Multi-Element Analyses in Liquid Chromatography - An Application Review
Evaluation of Column Retentivity with large injection volume for high sensitive and High-Throughput LC-MS/MS Quantitative Analysis
High-throughput non-targeted metabolic profiling with hybrid stationary phase LC column coupled to Q-TOF-MS in cancer research
A simple and reliable method for simultaneous quantification of antiepileptic drugs in plasma using LC-MS/MS combined with direct injection column
Development of a novel amino acids analysis column for LC-MS without derivatization
Simultaneous quantitative analysis of 20 amino acids in food samples without derivatization using LC - MS/MS
The world's first specialty column for intact amino acid analysis via LC-MS
A Novel Separation for Ethyl Glucuronide and Ethyl Sulfate using a Multi - Mode Reversed - Phase Column
High Throughput Reliable Quantitation of 25 - hydroxy vitamin D in Serum by Offline Sample Preparation and a LC - MS/MS Instrument
A high throughput solid phase extraction method for vitamin B3 and related metabolites from pooled human serum using ISOLUTE SCX-3 96 well plates prior to mixed mode LC-MS/MS
Mixed Mode Mechanisms in LC: Curse or Cure?
LC-MS analysis of intact amino acids on a novel mixed-mode HPLC column
Ultra High Sensitivity Analysis of Testosterone
High Throughput Simultaneous Analysis of Immunosuppressants by ESI/ESI Dual Source Coaxial Flow Ion Source LC-MS/MS System
High Sensitivity Methotrexate Quantitation in Human Serum utilizing LC-MS/MS
Simple and Rapid Method Development for High Throughput Analysis of Pain Management Drugs in Urine by LC-MS/MS
A Sensitive LC-MRM Method for Analysis of Nucleotides in Cell Extracts
High throughput analysis of anion surfactant using ultra-high speek LC-MS/MS and 1mm inside diameter column
Neurotransmitters in the Striatum Tissues from Animal Brain: UPLC-MS/MS Method Validation and Application to Animal Models of Parkinson's Disease
Quantitation of Hindered Amine Light Stabilizers (HALS) by LC and CAD
Reversed-Phase HPLC Method for Hydrophobic Protein Analysis
Determination of Pluronic F-68 High Protein Matrices by HPLC-RAM-ELSD
Development of simultaneous analysis method on organophosphorous pesticides and quaternary ammonium herbicides using LC/MS
A development and application study for anion exchange + cation exchange + normal phase + reversed-phase multi-mode ODS column
Development of A Normal Phase HPLC Method for the Separation of Creatinine and Purine Metabolites
Advantages of Isopropanol for the Reverse Phase Analysis of Peptide Pharmaceuticals
Evalutation of Column Retention with large injection volume for high sensitive and high throughput LC-MS/MS Quantitative Analysis
Universal LC-MS method for minimized carryover in a discovery bioanalytical setting
An efficient LC-MS method for isomer separation and detection of sugars, phosphorylated sugars, and organic acids
Real-time quantification and supplementation of bioreactor amino acids to prolong culture time and maintain antibody product quality
A relative quantitative positive/negative ion switching method for untargeted lipidomics via high resolution LC-MS/MS from any biological source
Analysis of Amphetamines and Synthetic Cathinones in Hair Samples Using LC–Tandem Mass Spectrometry and Solid-Phase Extraction
Anti-hepatitis C virus compounds obtained from Glycyrrhiza uralensis and other Glycyrrhiza species
Binding potential of (E)-[11C]ABP688 to metabotropic glutamate receptor subtype 5 is decreased by the inclusion of its 11C-labelled Z-isomer
Comprehensive analysis of pharmaceutical products using simultaneous mixed-mode (ion-exchange/reversed-phase) and hydrophilic interaction liquid chromatography
Development of Iodoacetyl-Based Ionic Mass Tags for Improved Sensitivity in the Detection of Cysteine-Containing Peptides by MADLI-TOF MS
Direct determination of residual Pluronic F-68 in in-process samples from monoclonal antibody preparations by high performance liquid chromatography
Factors influencing the separation of oligonucleotides using reversed-phase/ion-exchange mixed-mode high performance liquid chromatography columns
Global proteomics and metabolomics in cancer biomarker discovery
High accuracy analysis of glucose in human serum by isotope dilution liquid chromatography-tandem mass spectrometry
High-performance liquid chromatography separation of monoclonal IgG2 isoforms on a column packed with nonporous particles
Improved production of 2-keto-3-deoxy-d-glycero-galactononulosonic acid (KDN) using FastPrep-CLEAs
Liquid chromatographic separation of proteins derivatized with a fluorogenic reagent at cysteinyl residues on a non-porous column for differential proteomics analysis
Long-Term Oral Feeding of Lutein-Fortified Milk Increases Voluntary Running Distance in Rats
Protective Effects of Ginseng Leaf Extract Using Enzymatic Extraction Against Oxidative Damage of UVA-Irradiated Human Keratinocytes
Quantification of monosaccharides through multiple-reaction monitoring liquid chromatography/ mass spectrometry using an aminopropyl column
Quantification of propranolol in rat plasma by LC-MS/MS using tramadol as an internal standard: Application to pharmacokinetic studies in TAA-induced liver fibrotic rats
Rapid and sensitive LC-ESI-MS of gangliosides
Sequential elution liquid chromatography can significantly increase the probability of a successful separation by simultaneously increasing the peak capacity and reducing the separation disorder
Simultaneous microdetermination of bosentan, ambrisentan, sildenafil, and tadalafil in plasma using liquid chromatography/tandem mass spectrometry for pediatric patients with pulmonary arterial hypert
Spin Tip Solid-Phase Extraction And HILIC-MS-MS For Quantitative Determination Of Methamphetamine And Amphetamine In Human Plasma
Stomatal Density is Controlled by a Mesophyll-Derived Signaling Molecule
Stress enhances the gene expression and enzyme activity of phenylalanine ammonia-lyase and the endogenous content of salicylic acid to induce flowering in pharbitis
Structure-based comprehensive identification of erythropoiesis-stimulating agents and their biosimilars
Time-course measurements of drugs and metabolites transferred from fingertips after drug administration: usefulness of fingerprints for drug testing
Universal LC–MS method for minimized carryover in a discovery bioanalytical setting