5.1
Drug biotransformation or metabolism entails chemical alteration of xenobiotics, either activating or deactivating their pharmacological properties.
Metabolism converts lipophilic drugs into polar, water-soluble products, aiding excretion. For instance, the conversion of codeine to morphine.
The liver is the primary site for drug metabolism, but the lungs, kidneys, intestines, placenta, and skin also contribute.
Most drugs are metabolized in two sequential phases. Phase I reactions introduce or unmask polar functional groups through oxidative, reductive, and hydrolytic reactions, preparing the drug for phase II reactions.
In phase II, products from phase I reactions conjugate with small polar molecules like glucuronic acid, sulfate, glycine, and glutathione, forming highly water-soluble metabolites.
Microsomal enzymes found in the liver's endoplasmic reticulum, along with non-microsomal enzymes in the cytoplasm and mitochondria, catalyze most drug biotransformation reactions.
Drug's physicochemical properties, biological variations, and chemical factors influence drug metabolism, where drugs form reactive metabolites, leading to toxicity.
Biotransformatie, ook bekend als geneesmiddelmetabolisme, is een vitaal fysiologisch proces dat geneesmiddelen chemisch verandert, waardoor ze gemakke…
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