Lu Hong
GlaxoSmithKline, Worldwide Drug Metabolism and Pharmacokinetics, 5 Moore Drive, Research Triangle Park, NC 27709-3398, USA.
Expert Opin Drug Metab Toxicol. 2007 Apr;3(2):149-58. doi: 10.1517/17425255.3.2.149.
Many chiral drugs are used as their racemic mixtures in clinical practice. Two enantiomers of a chiral drug generally differ in pharmacodynamic and/or pharmacokinetic properties as a consequence of the stereoselective interaction with optically active biological macromolecules. Thus, a stereospecific assay to discriminate between enantiomers is required in order to relate plasma concentrations to pharmacological effect of a chiral drug. Stereoselective metabolism of drugs is most commonly the major contributing factor to stereoselectivity in pharmacokinetics. Metabolizing enzymes often display a preference for one enantiomer of a chiral drug over the other, resulting in enantioselectivity. The structural characteristics of enzymes dictate the enantiomeric discrimination associated with the metabolism of chiral drugs. The stereoselectivity can, therefore, be viewed as the physical property characteristic that phenotypes the enzyme. This review provides a comprehensive appraisal of stereochemical aspects of drug metabolism (i.e., enantioselective metabolism and first-pass effect, enzyme-selective inhibition or induction and drug interaction, species differences and polymorphic metabolism).
许多手性药物在临床实践中以其外消旋混合物的形式使用。由于与光学活性生物大分子的立体选择性相互作用,手性药物的两种对映体通常在药效学和/或药代动力学性质上有所不同。因此,为了将血浆浓度与手性药物的药理作用联系起来,需要一种立体特异性分析方法来区分对映体。药物的立体选择性代谢通常是药代动力学中立体选择性的主要促成因素。代谢酶通常对一种手性药物的对映体比对另一种表现出偏好,从而导致对映体选择性。酶的结构特征决定了与手性药物代谢相关的对映体区分。因此,立体选择性可以被视为表征酶的物理性质特征。本综述全面评估了药物代谢的立体化学方面(即对映体选择性代谢和首过效应、酶选择性抑制或诱导以及药物相互作用、物种差异和多态性代谢)。