Cationic drug pharmacokinetics in diseased livers determined by fibrosis index, hepatic protein content, microsomal activity, and nature of drug
Data(s) |
01/06/2002
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Resumo |
The disposition kinetics of six cationic drugs in perfused diseased and normal rat livers were determined by multiple indicator dilution and related to the drug physicochemical properties and liver histopathology. A carbon tetrachloride (CCl4)induced acute hepatocellular injury model had a higher fibrosis index (FI), determined by computer-assisted image analysis, than did an alcohol-induced chronic hepatocellular injury model. The alcohol-treated group had the highest hepatic alpha(1)- acid glycoprotein, microsomal protein (MP), and cytochrome P450 (P450) concentrations. Various pharmacokinetic parameters could be related to the octanol-water partition coefficient (log P-app) of the drug as a surrogate for plasma membrane partition coefficient and affinity for MP or P450, the dependence being lower in the CCl4-treated group and higher in the alcohol-treated group relative to controls. Stepwise regression analysis showed that hepatic extraction ratio, permeability-surface area product, tissue-binding constant, intrinsic clearance, partition ratio of influx (k(in)) and efflux rate constant (k(out)), and k(in)/k(out) were related to physicochemical properties of drug (log P-app or pK(a)) and liver histopathology (FI, MP, or P450). In addition, hepatocyte organelle ion trapping of cationic drugs was evident in all groups. It is concluded that fibrosis-inducing hepatic disease effects on cationic drug disposition in the liver may be predicted from drug properties and liver histopathology. |
Identificador | |
Idioma(s) |
eng |
Publicador |
American Society for Pharmacology and Experimental Therapeuts |
Palavras-Chave | #Pharmacology & Pharmacy #Convection-dispersion Model #Organ Distribution Kinetics #Blood-cell Carriage #Perfused Rat Livers #Alpha(1)-acid Glycoprotein #Cytoplasmic-binding #Nonspecific-binding #Partial-hepatectomy #Biliary-cirrhosis #In-vitro #C1 #320503 Clinical Pharmacology and Therapeutics #730118 Organs, diseases and abnormal conditions not elsewhere classified |
Tipo |
Journal Article |