Xenobiotic carboxylic acids may be metabolized to oxidative metabolites, acyl glucuronides, and/or S-acyl-CoA thioesters (CoA conjugates) in vitro, e.g., in hepatocytes, and in vivo. These metabolites can potentially be reactive species and bind covalently to tissue proteins and are generally considered to mediate adverse drug reactions in humans. Acyl glucuronide metabolites have been the focus of reactive metabolite research for decades, whereas drug-CoA conjugates, which have been shown to be up to 40–70 times more reactive, have been given much less attention. In an attempt to dissect the contribution of different pathways to covalent binding, we utilized human liver microsomes supplemented with NADPH, uridine 5′-diphosphoglucuronic aci...
Fenclozic acid (Myalex) was developed by ICI pharmaceuticals in the 1960s for the treatment of rheum...
Artículo de publicación ISIAcyl-CoAs are present at high concentrations within the cell, yet are str...
Acyl glucuronides are a unique class of electrophilic metabolites, capable of non-enzymatic reaction...
While xenobiotic carboxylic acids (XCAs) have been studied extensively with respect to their enzymat...
Benoxaprofen (BNX), a nonsteroidal anti-inflammatory drug (NSAID) that was withdrawn because of hepa...
The covalent binding of drugs or their metabolites to proteins is of increasing interest in the inve...
Bioactivation of a drug to a reactive metabolite and its covalent binding to cellular macromolecules...
The metabolic conjugation of exogenous and endogenous carboxylic acid substrates with endogenous glu...
Acyl glucuronidation is a common metabolic fate for acidic drugs and their metabolites and, because ...
Acyl glucuronidation is a common metabolic fate for acidic drugs and their metabolites and, because ...
Mefenamic acid, (MFA), a carboxylic acid-containing nonsteroidal anti-inflammatory drug (NSAID), is ...
The formation of drug-protein adducts via metabolic activation and covalent binding may stimulate an...
Mefenamic acid, (MFA), a nonsteroidal anti-inflammatory drug, is metabolized to MFA-1-O-acyl-glucuro...
The formation of drug-protein adducts via metabolic activation and covalent binding may stimulate an...
Endogenous fatty acyl-CoAs play an important role in the acylation of proteins. A number of xenobiot...
Fenclozic acid (Myalex) was developed by ICI pharmaceuticals in the 1960s for the treatment of rheum...
Artículo de publicación ISIAcyl-CoAs are present at high concentrations within the cell, yet are str...
Acyl glucuronides are a unique class of electrophilic metabolites, capable of non-enzymatic reaction...
While xenobiotic carboxylic acids (XCAs) have been studied extensively with respect to their enzymat...
Benoxaprofen (BNX), a nonsteroidal anti-inflammatory drug (NSAID) that was withdrawn because of hepa...
The covalent binding of drugs or their metabolites to proteins is of increasing interest in the inve...
Bioactivation of a drug to a reactive metabolite and its covalent binding to cellular macromolecules...
The metabolic conjugation of exogenous and endogenous carboxylic acid substrates with endogenous glu...
Acyl glucuronidation is a common metabolic fate for acidic drugs and their metabolites and, because ...
Acyl glucuronidation is a common metabolic fate for acidic drugs and their metabolites and, because ...
Mefenamic acid, (MFA), a carboxylic acid-containing nonsteroidal anti-inflammatory drug (NSAID), is ...
The formation of drug-protein adducts via metabolic activation and covalent binding may stimulate an...
Mefenamic acid, (MFA), a nonsteroidal anti-inflammatory drug, is metabolized to MFA-1-O-acyl-glucuro...
The formation of drug-protein adducts via metabolic activation and covalent binding may stimulate an...
Endogenous fatty acyl-CoAs play an important role in the acylation of proteins. A number of xenobiot...
Fenclozic acid (Myalex) was developed by ICI pharmaceuticals in the 1960s for the treatment of rheum...
Artículo de publicación ISIAcyl-CoAs are present at high concentrations within the cell, yet are str...
Acyl glucuronides are a unique class of electrophilic metabolites, capable of non-enzymatic reaction...