Overview
Clinical Meaning
The liver is the primary site of drug metabolism, and hepatic impairment fundamentally alters pharmacokinetics through multiple mechanisms.
The liver is the primary site of drug metabolism, and hepatic impairment fundamentally alters pharmacokinetics through multiple mechanisms. Phase I metabolism (oxidation, reduction, hydrolysis) via cytochrome P450 enzymes (CYP3A4, CYP2D6, CYP2C9, CYP1A2) is reduced in proportion to functional hepatocyte loss. Phase II metabolism (conjugation — glucuronidation, sulfation, acetylation) is generally preserved until advanced cirrhosis. First-pass metabolism is reduced by both hepatocyte dysfunction and portosystemic shunting, dramatically increasing oral bioavailability of high-extraction drugs (propranolol, morphine, midazolam — oral doses may produce IV-equivalent drug levels). Hypoalbuminemia in cirrhosis increases the free fraction of highly protein-bound drugs (phenytoin, warfarin, diazepam), potentiating their effects despite normal total drug levels. The Child-Pugh score (albumin, bilirubin, INR, ascites, encephalopathy) classifies hepatic impairment severity (A = mild, B = moderate, C = severe) and guides dose adjustment. MELD score (bilirubin, INR, creatinine) predicts 90-day mortality and transplant priority. Key prescribing principles: avoid hepatotoxic drugs (acetaminophen limit to 2g/day, avoid NSAIDs which reduce renal blood flow and cause GI bleeding, avoid statins in decompensated cirrhosis); reduce doses of hepatically metabolized drugs by 50% in Child-Pugh B and 75%...
