Clinical Biochemistry, ISSN 0009-9120, 2011, Volume 44, Issue 4, pp. 293 - 299
We sought to identify metabolic pathways characterizing human heart failure (HF) using NMR based urinary metabolomic analysis in conjunction with multivariate...
Heart failure | Phenylacetylglycine | Citric acid cycle | Methylmalonic acid | Metabolism
Heart failure | Phenylacetylglycine | Citric acid cycle | Methylmalonic acid | Metabolism
Journal Article
JOURNALS OF GERONTOLOGY SERIES A-BIOLOGICAL SCIENCES AND MEDICAL SCIENCES, ISSN 1079-5006, 01/2015, Volume 70, Issue 1, pp. 78 - 84
Background. Characterization of the variations in the metabolomic profiles of elderly people is a necessary step to understand changes associated with aging....
Oxidative stress | METABONOMICS | ACID | METAANALYSIS | Mediterranean diet | HEART-FAILURE | Phenylacetylglycine | HUMANS | Coenzyme Q | Hippurate | URINARY | GERIATRICS & GERONTOLOGY | CARDIOVASCULAR-DISEASE | GERONTOLOGY | URINALYSIS | CONSUMPTION
Oxidative stress | METABONOMICS | ACID | METAANALYSIS | Mediterranean diet | HEART-FAILURE | Phenylacetylglycine | HUMANS | Coenzyme Q | Hippurate | URINARY | GERIATRICS & GERONTOLOGY | CARDIOVASCULAR-DISEASE | GERONTOLOGY | URINALYSIS | CONSUMPTION
Journal Article
International Journal of Biological Macromolecules, ISSN 0141-8130, 03/2018, Volume 108, pp. 550 - 557
Diabetes has become a global and serious health issues which causes a variety of complications. This study aims to explore the hypoglycemic effect of...
Metabolomics | Polysaccharides | Diabetes | Crassostrea gigas | METABOLITES | POLYMER SCIENCE | BIOCHEMISTRY & MOLECULAR BIOLOGY | RATS | ATHEROSCLEROSIS | MELLITUS | TANDEM MASS-SPECTROMETRY | PHENYLACETYLGLYCINE | LIVER-INJURY | URINE | SERUM METABOLOMICS | CHEMISTRY, APPLIED | INTERVENTION
Metabolomics | Polysaccharides | Diabetes | Crassostrea gigas | METABOLITES | POLYMER SCIENCE | BIOCHEMISTRY & MOLECULAR BIOLOGY | RATS | ATHEROSCLEROSIS | MELLITUS | TANDEM MASS-SPECTROMETRY | PHENYLACETYLGLYCINE | LIVER-INJURY | URINE | SERUM METABOLOMICS | CHEMISTRY, APPLIED | INTERVENTION
Journal Article
Therapeutic Advances in Drug Safety, ISSN 2042-0986, 6/2013, Volume 4, Issue 3, pp. 101 - 114
Background: Phospholipidosis (PLD) is a lysosomal storage disorder induced by a class of cationic amphiphilic drugs. However, drug-induced PLD is reversible....
Biomarker | Urinary phenylacetylglycine | Phospholipidosis | phospholipidosis | urinary phenylacetylglycine | biomarker | Original Research
Biomarker | Urinary phenylacetylglycine | Phospholipidosis | phospholipidosis | urinary phenylacetylglycine | biomarker | Original Research
Journal Article
CLINICAL BIOCHEMISTRY, ISSN 0009-9120, 03/2011, Volume 44, Issue 4, pp. 293 - 299
Objectives: We sought to identify metabolic pathways characterizing human heart failure (HF) using (NMR)-N-1 based urinary metabolomic analysis in conjunction...
Heart failure | CANCER PATIENTS | MYOCARDIAL-INFARCTION | Phenylacetylglycine | SERUM | Metabolism | Methylmalonic acid | PEROXISOME PROLIFERATION | FAILING HEART | DISEASE | MODIFIED NUCLEOSIDES | GENE-EXPRESSION | Citric acid cycle | MEDICAL LABORATORY TECHNOLOGY | PLASMA HOMOCYSTEINE | REVEALS
Heart failure | CANCER PATIENTS | MYOCARDIAL-INFARCTION | Phenylacetylglycine | SERUM | Metabolism | Methylmalonic acid | PEROXISOME PROLIFERATION | FAILING HEART | DISEASE | MODIFIED NUCLEOSIDES | GENE-EXPRESSION | Citric acid cycle | MEDICAL LABORATORY TECHNOLOGY | PLASMA HOMOCYSTEINE | REVEALS
Journal Article
Journal of Chromatography B, ISSN 1570-0232, 11/2016, Volume 1035, pp. 76 - 83
Urinary hippuric acid (HA) and phenylacetylglycine (PAG) are biomarker candidates for drug-induced phospholipidosis (PLD). To confirm their utility in...
Phenylacetylglycine | Drug-induced phospholipidosis | Hippuric acid | Analytical validation | LC/MS/MS | CHEMISTRY, ANALYTICAL | AMIODARONE-TREATED RATS | BIOMARKER | QUANTIFICATION | MONITOR | BIOCHEMICAL RESEARCH METHODS | NIEMANN-PICK-DISEASE | AMPHIPHILIC CATIONIC DRUGS | LIPIDOSIS | ACCUMULATION | SAMPLES | Glycine - analogs & derivatives | Reference Standards | Animals | Spectrometry, Mass, Electrospray Ionization - methods | Glycine - urine | Rats | Chromatography, Liquid - methods | Rats, Sprague-Dawley | Hippurates - urine | Liquid chromatography | Pharmaceutical industry | Mass spectrometry | Methods | Index Medicus
Phenylacetylglycine | Drug-induced phospholipidosis | Hippuric acid | Analytical validation | LC/MS/MS | CHEMISTRY, ANALYTICAL | AMIODARONE-TREATED RATS | BIOMARKER | QUANTIFICATION | MONITOR | BIOCHEMICAL RESEARCH METHODS | NIEMANN-PICK-DISEASE | AMPHIPHILIC CATIONIC DRUGS | LIPIDOSIS | ACCUMULATION | SAMPLES | Glycine - analogs & derivatives | Reference Standards | Animals | Spectrometry, Mass, Electrospray Ionization - methods | Glycine - urine | Rats | Chromatography, Liquid - methods | Rats, Sprague-Dawley | Hippurates - urine | Liquid chromatography | Pharmaceutical industry | Mass spectrometry | Methods | Index Medicus
Journal Article
Journals of Gerontology - Series A Biological Sciences and Medical Sciences, ISSN 1079-5006, 01/2015, Volume 70, Issue 1, pp. 78 - 84
Characterization of the variations in the metabolomic profiles of elderly people is a necessary step to understand changes associated with aging. This study...
Phenylacetylglycine | Oxidative stress | Coenzyme Q | Mediterranean diet | Hippurate | Biomarkers - metabolism | beta Carotene - blood | Glycine - analogs & derivatives | Metabolomics | Gene Expression | Ubiquinone - administration & dosage | Diet, Mediterranean | Oxidative Stress | Glycine - urine | Humans | Ubiquinone - analogs & derivatives | Male | Hippurates - urine | Cross-Over Studies | Aging - genetics | Antioxidants - administration & dosage | Dietary Fats - administration & dosage | Female | Aged | Dietary Supplements | Aging - metabolism
Phenylacetylglycine | Oxidative stress | Coenzyme Q | Mediterranean diet | Hippurate | Biomarkers - metabolism | beta Carotene - blood | Glycine - analogs & derivatives | Metabolomics | Gene Expression | Ubiquinone - administration & dosage | Diet, Mediterranean | Oxidative Stress | Glycine - urine | Humans | Ubiquinone - analogs & derivatives | Male | Hippurates - urine | Cross-Over Studies | Aging - genetics | Antioxidants - administration & dosage | Dietary Fats - administration & dosage | Female | Aged | Dietary Supplements | Aging - metabolism
Journal Article
American Journal of Physiology - Gastrointestinal and Liver Physiology, ISSN 0193-1857, 11/2014, Volume 307, Issue 10, pp. G1024 - G1031
Glycine is an important ammoniagenic amino acid, which is increased in acute liver failure (ALF). We have previously shown that L-ornithine phenylacetate (OP)...
L-ornithine-phenylacetate | Phenylacetylglycine | Ammonia | Glycine | PHYSIOLOGY | phenylacetylglycine | HYPERAMMONEMIA | INTERORGAN AMMONIA | ammonia | RATS | ENCEPHALOPATHY | METABOLISM | glycine | AMINO-ACIDS | GLUTAMATE | FULMINANT HEPATIC-FAILURE | GASTROENTEROLOGY & HEPATOLOGY | N-ACYLTRANSFERASE | Glycine - analogs & derivatives | Glycine - metabolism | Liver Failure, Acute - complications | Hyperammonemia - metabolism | Glycine - urine | Ornithine - analogs & derivatives | Brain - metabolism | Hyperammonemia - drug therapy | Kidney - metabolism | Time Factors | Swine | Female | Liver Failure, Acute - drug therapy | Hyperammonemia - etiology | Disease Models, Animal | Biomarkers - metabolism | Glycine - blood | Kidney - drug effects | Ammonia - metabolism | Ammonia - blood | Ornithine - pharmacology | Liver Failure, Acute - metabolism | Random Allocation | Brain - drug effects | Animals
L-ornithine-phenylacetate | Phenylacetylglycine | Ammonia | Glycine | PHYSIOLOGY | phenylacetylglycine | HYPERAMMONEMIA | INTERORGAN AMMONIA | ammonia | RATS | ENCEPHALOPATHY | METABOLISM | glycine | AMINO-ACIDS | GLUTAMATE | FULMINANT HEPATIC-FAILURE | GASTROENTEROLOGY & HEPATOLOGY | N-ACYLTRANSFERASE | Glycine - analogs & derivatives | Glycine - metabolism | Liver Failure, Acute - complications | Hyperammonemia - metabolism | Glycine - urine | Ornithine - analogs & derivatives | Brain - metabolism | Hyperammonemia - drug therapy | Kidney - metabolism | Time Factors | Swine | Female | Liver Failure, Acute - drug therapy | Hyperammonemia - etiology | Disease Models, Animal | Biomarkers - metabolism | Glycine - blood | Kidney - drug effects | Ammonia - metabolism | Ammonia - blood | Ornithine - pharmacology | Liver Failure, Acute - metabolism | Random Allocation | Brain - drug effects | Animals
Journal Article
Biomarkers, ISSN 1354-750X, 02/2017, Volume 22, Issue 2, pp. 178 - 188
Context: Drug-induced phospholipidosis is one of the significant concerns in drug development, especially in safety assessment and noninvasive diagnostic tool...
Phenylacetylglycine | drug-induced phospholipidosis | hippuric acid | phenylalanine metabolism | AMIODARONE-TREATED RATS | MECHANISM | TOXICITY | AMPHIPHILIC CATIONIC DRUGS | INHIBITION | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | LIVER | BODIES | TOXICOLOGY | INDUCED LIPIDOSIS | Glycine - analogs & derivatives | Glycine - blood | Biomarkers - urine | Glycine - urine | Biomarkers - analysis | Rats | Hippurates - analysis | Phospholipids | Biomarkers - blood | Drug Monitoring - methods | Metabolomics - methods | Hippurates - urine | Lipidoses - chemically induced | Animals | Hippurates - blood | Glycine - analysis | Lipidoses - diagnosis | Index Medicus
Phenylacetylglycine | drug-induced phospholipidosis | hippuric acid | phenylalanine metabolism | AMIODARONE-TREATED RATS | MECHANISM | TOXICITY | AMPHIPHILIC CATIONIC DRUGS | INHIBITION | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | LIVER | BODIES | TOXICOLOGY | INDUCED LIPIDOSIS | Glycine - analogs & derivatives | Glycine - blood | Biomarkers - urine | Glycine - urine | Biomarkers - analysis | Rats | Hippurates - analysis | Phospholipids | Biomarkers - blood | Drug Monitoring - methods | Metabolomics - methods | Hippurates - urine | Lipidoses - chemically induced | Animals | Hippurates - blood | Glycine - analysis | Lipidoses - diagnosis | Index Medicus
Journal Article
Journal of Applied Toxicology, ISSN 0260-437X, 12/2017, Volume 37, Issue 12, pp. 1493 - 1506
Maleic acid (MA), a chemical intermediate used in many consumer and industrial products, was intentionally adulterated in a variety of starch‐based foods and...
liquid chromatography tandem mass spectrometry | metabolomics | urine | biomarkers | nuclear magnetic resonance | maleic acid | oxidative stress | GLYCINE | INDUCED FANCONI-SYNDROME | MECHANISM | PHOSPHOLIPIDOSIS | QUANTIFICATION | PHENYLACETYLGLYCINE | URINARY | 8-ISOPROSTANE | TOXICOLOGY | Safety and security measures | Metabolites | Liver | Body weight | Physiological aspects | Nuclear magnetic resonance spectroscopy | Mass spectrometry | High performance liquid chromatography | Food | Oxidative stress | Metabolomics | Energy metabolism | Nuclear magnetic resonance--NMR | Toxicity | Syngeneic grafts | Nuclear engineering | Statistical methods | Multivariate analysis | Magnetic resonance spectroscopy | Rodents | Maleic acid | Product safety | Hepatotoxicity | Urine | Spectroscopy | Alanine | Kidneys | Statistical analysis | Starch | Industrial products | Organs | Rats | Mass spectroscopy | Liquid chromatography | Exposure | Metabolism | Nuclear safety | Deoxyguanosine | Acids | Biomarkers | Organ weight | Scientific imaging | Resonance | Food safety | Acetic acid | Index Medicus
liquid chromatography tandem mass spectrometry | metabolomics | urine | biomarkers | nuclear magnetic resonance | maleic acid | oxidative stress | GLYCINE | INDUCED FANCONI-SYNDROME | MECHANISM | PHOSPHOLIPIDOSIS | QUANTIFICATION | PHENYLACETYLGLYCINE | URINARY | 8-ISOPROSTANE | TOXICOLOGY | Safety and security measures | Metabolites | Liver | Body weight | Physiological aspects | Nuclear magnetic resonance spectroscopy | Mass spectrometry | High performance liquid chromatography | Food | Oxidative stress | Metabolomics | Energy metabolism | Nuclear magnetic resonance--NMR | Toxicity | Syngeneic grafts | Nuclear engineering | Statistical methods | Multivariate analysis | Magnetic resonance spectroscopy | Rodents | Maleic acid | Product safety | Hepatotoxicity | Urine | Spectroscopy | Alanine | Kidneys | Statistical analysis | Starch | Industrial products | Organs | Rats | Mass spectroscopy | Liquid chromatography | Exposure | Metabolism | Nuclear safety | Deoxyguanosine | Acids | Biomarkers | Organ weight | Scientific imaging | Resonance | Food safety | Acetic acid | Index Medicus
Journal Article
Biomarkers, ISSN 1354-750X, 2000, Volume 5, Issue 6, pp. 410 - 423
1H NMR spectroscopy of urine and pattern recognition analysis have been used to study the metabolic perturbations caused following dosing of five novel drug...
Phospholipidosis 1h Nmr Urinalysis Metabonomics Phenylacetylglycine Cationic Amphiphilics Phenylacetate | NMR | METABONOMICS | PHENYLACETATE | PHOSPHOLIPIDOSIS | CATIONIC | URINALYSIS | PHENYLACETYLGLYCINE | AMPHIPHILICS | Phenylacetate | Urinalysis | Metabonomics | Phenylacetylglycine | H NMR | Cationic amphiphilics | Phospholipidosis | metabonomics | phenylacetylglycine | RAT | PHENYLACETIC ACID | phospholipidosis | TOXICITY | MODEL | URINARY | DAMAGE | cationic amphiphilics | urinalysis | H-1 NMR | PLASMA | CHLORPROMAZINE | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | LIVER | TOXICOLOGY | phenylacetate
Phospholipidosis 1h Nmr Urinalysis Metabonomics Phenylacetylglycine Cationic Amphiphilics Phenylacetate | NMR | METABONOMICS | PHENYLACETATE | PHOSPHOLIPIDOSIS | CATIONIC | URINALYSIS | PHENYLACETYLGLYCINE | AMPHIPHILICS | Phenylacetate | Urinalysis | Metabonomics | Phenylacetylglycine | H NMR | Cationic amphiphilics | Phospholipidosis | metabonomics | phenylacetylglycine | RAT | PHENYLACETIC ACID | phospholipidosis | TOXICITY | MODEL | URINARY | DAMAGE | cationic amphiphilics | urinalysis | H-1 NMR | PLASMA | CHLORPROMAZINE | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | LIVER | TOXICOLOGY | phenylacetate
Journal Article
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Glycine and hyperammonemia: potential target for the treatment of hepatic encephalopathy
Metabolic Brain Disease, ISSN 0885-7490, 12/2016, Volume 31, Issue 6, pp. 1269 - 1273
Hepatic encephalopathy (HE) is a neuropsychiatric disorder caused by hepatic dysfunction. Numerous studies dictate that ammonia plays an important role in the...
Biochemistry, general | Neurology | Ammonia | Neurosciences | Biomedicine | Metabolic Diseases | L-ornithine-phenylacetate (OP) | Phenylacetylglycine | Oncology | Glycine | Glutamine | ACUTE LIVER-FAILURE | INTRACRANIAL HYPERTENSION | GLYCEROL PHENYLBUTYRATE | CLEAVAGE SYSTEM | NEUROSCIENCES | BRAIN EDEMA | NONKETOTIC HYPERGLYCINEMIA | CIRRHOTIC RATS | AMINO-ACIDS | ENDOCRINOLOGY & METABOLISM | GLUTAMINE-SYNTHETASE | ORNITHINE PHENYLACETATE | Hyperammonemia - epidemiology | Glycine - metabolism | Hepatic Encephalopathy - metabolism | Hyperammonemia - metabolism | Humans | Ornithine - analogs & derivatives | Treatment Outcome | Hepatic Encephalopathy - drug therapy | Hyperammonemia - drug therapy | Animals | Glycine - antagonists & inhibitors | Ornithine - administration & dosage | Drug Delivery Systems - trends | Hepatic Encephalopathy - epidemiology | Care and treatment | Nervous system diseases | Liver | Anesthesia | Amino acids | Hepatic encephalopathy
Biochemistry, general | Neurology | Ammonia | Neurosciences | Biomedicine | Metabolic Diseases | L-ornithine-phenylacetate (OP) | Phenylacetylglycine | Oncology | Glycine | Glutamine | ACUTE LIVER-FAILURE | INTRACRANIAL HYPERTENSION | GLYCEROL PHENYLBUTYRATE | CLEAVAGE SYSTEM | NEUROSCIENCES | BRAIN EDEMA | NONKETOTIC HYPERGLYCINEMIA | CIRRHOTIC RATS | AMINO-ACIDS | ENDOCRINOLOGY & METABOLISM | GLUTAMINE-SYNTHETASE | ORNITHINE PHENYLACETATE | Hyperammonemia - epidemiology | Glycine - metabolism | Hepatic Encephalopathy - metabolism | Hyperammonemia - metabolism | Humans | Ornithine - analogs & derivatives | Treatment Outcome | Hepatic Encephalopathy - drug therapy | Hyperammonemia - drug therapy | Animals | Glycine - antagonists & inhibitors | Ornithine - administration & dosage | Drug Delivery Systems - trends | Hepatic Encephalopathy - epidemiology | Care and treatment | Nervous system diseases | Liver | Anesthesia | Amino acids | Hepatic encephalopathy
Journal Article
Biomarkers, ISSN 1354-750X, 05/2004, Volume 9, Issue 3, pp. 271 - 290
Amiodarone was given to male Sprague-Dawley rats at a dose of 150 mg kg−1 day−1 for 7 consecutive days to induce phospholipidosis in the lungs of treated rats....
phospholipidosis | phenylacetylglycine | amiodarone | biomarker | validation | PAG | Validation | Phenylacetylglycine | Biomarker | Amiodarone | Phospholipidosis | CHROMATOGRAPHIC ANALYSIS | INDOLIC COMPOUNDS | PHENYLALANINE-HYDROXYLASE | PHENYLACETIC ACID | HUMAN LARGE-INTESTINE | NIEMANN-PICK DISEASE | ALKOXYRESORUFIN O-DEALKYLATION | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | ALVEOLAR MACROPHAGES | TOXICOLOGY | N-DESETHYLAMIODARONE | INDUCED LIPIDOSIS | Phenobarbital - pharmacology | Glycine - analogs & derivatives | Glycine - blood | Glycine - metabolism | Biomarkers - urine | Body Weight | Glycine - urine | Liver - metabolism | Organ Size | Rats | Male | Lymphocytes - cytology | Biomarkers - blood | Chromatography, High Pressure Liquid | Rats, Sprague-Dawley | Tissue Distribution | Animals | Time Factors | Lipids - blood | Phospholipids - metabolism | Lipidoses - metabolism | Amiodarone - pharmacology
phospholipidosis | phenylacetylglycine | amiodarone | biomarker | validation | PAG | Validation | Phenylacetylglycine | Biomarker | Amiodarone | Phospholipidosis | CHROMATOGRAPHIC ANALYSIS | INDOLIC COMPOUNDS | PHENYLALANINE-HYDROXYLASE | PHENYLACETIC ACID | HUMAN LARGE-INTESTINE | NIEMANN-PICK DISEASE | ALKOXYRESORUFIN O-DEALKYLATION | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | ALVEOLAR MACROPHAGES | TOXICOLOGY | N-DESETHYLAMIODARONE | INDUCED LIPIDOSIS | Phenobarbital - pharmacology | Glycine - analogs & derivatives | Glycine - blood | Glycine - metabolism | Biomarkers - urine | Body Weight | Glycine - urine | Liver - metabolism | Organ Size | Rats | Male | Lymphocytes - cytology | Biomarkers - blood | Chromatography, High Pressure Liquid | Rats, Sprague-Dawley | Tissue Distribution | Animals | Time Factors | Lipids - blood | Phospholipids - metabolism | Lipidoses - metabolism | Amiodarone - pharmacology
Journal Article
14.
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Detection of in vivo biomarkers of phospholipidosis using NMR‐based metabonomic approaches
Magnetic Resonance in Chemistry, ISSN 0749-1581, 09/2001, Volume 39, Issue 9, pp. 559 - 565
The application of high‐field 1H NMR spectroscopy to the analysis of biological fluids has proved to be a valuable approach to toxicological screening. Coupled...
chloroquine | metabonomics | NMR | phenylacetylglycine | amiodarone | Fischer rat | phospholipidosis | 1H NMR | amphiphilic drugs | Amphiphilic drugs | Chloroquine | Phenylacetylglycine | Amiodarone | Phospholipidosis; metabonomics | H NMR | H-1-NMR | NUCLEAR-MAGNETIC-RESONANCE | CARDIOMYOPATHY | CHEMISTRY, PHYSICAL | DISORDERS | CHEMISTRY, MULTIDISCIPLINARY | H-1 NMR | PATTERN-RECOGNITION | PLASMA | SPECTROSCOPY | URINE | LIVER
chloroquine | metabonomics | NMR | phenylacetylglycine | amiodarone | Fischer rat | phospholipidosis | 1H NMR | amphiphilic drugs | Amphiphilic drugs | Chloroquine | Phenylacetylglycine | Amiodarone | Phospholipidosis; metabonomics | H NMR | H-1-NMR | NUCLEAR-MAGNETIC-RESONANCE | CARDIOMYOPATHY | CHEMISTRY, PHYSICAL | DISORDERS | CHEMISTRY, MULTIDISCIPLINARY | H-1 NMR | PATTERN-RECOGNITION | PLASMA | SPECTROSCOPY | URINE | LIVER
Journal Article
Synthesis, ISSN 0039-7881, 1994, Volume 1, Issue 5, pp. 480 - 482
Application of the Holmberg procedure (DCC/pyridine/p-TSA(cat)) improves the yield of the direct condensation of phenols with phenylacetylglycine (1)....
5(4H)-OXAZOLONE | PHENACETURATES | ESTERIFICATION | HYDROLYSIS | CHEMISTRY, ORGANIC | TERT-BUTOXYCARBONYLATION | PHENYLACETYLGLYCINE
5(4H)-OXAZOLONE | PHENACETURATES | ESTERIFICATION | HYDROLYSIS | CHEMISTRY, ORGANIC | TERT-BUTOXYCARBONYLATION | PHENYLACETYLGLYCINE
Journal Article
Enzyme and Microbial Technology, ISSN 0141-0229, 1980, Volume 2, Issue 4, pp. 313 - 317
In the reported experiments, the kinetics of the enzymatic synthesis of benzylpenicillin catalysed by penicillin amidase (EC 3. 5. 1. 11) from Escherichia coli...
PAA, phenylacetic acid | PAG, phenylacetylglycine | 6-APA, 6-aminopenicillanic acid | PMSF, phenylmethyl-sulphonylfluoride
PAA, phenylacetic acid | PAG, phenylacetylglycine | 6-APA, 6-aminopenicillanic acid | PMSF, phenylmethyl-sulphonylfluoride
Journal Article
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