作为一种潜在的新细胞抑制剂药物,奥拉西星在人肝微粒体和细胞质中的主要代谢途径:主要代谢物11-二氢奥拉西星再氧化为奥拉西星的立体选择性。

Enantiomer Pub Date : 2000-01-01
V Wsól, B Szotáková, L Skálová, H Cepková, E Kvasnicková
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引用次数: 0

摘要

手性是大多数生物过程的一个显著特征。受体、酶和其他内源性大分子的内在不对称性是生物体内所有外来化合物的立体异构体形式之间生物区分的基础。立体选择性和立体特异性是酶活性的两个主要手性属性,在药物和其他外源生物转化过程中起着重要作用。酶的立体特异性导致某些对映体优先形成,另一方面,酶的立体选择性表达了一种立体异构体形式的底物在随后的生物转化中的优先性。本文描述了一种研究人体内潜在细胞抑制剂奥拉西星主要代谢物的两种对映体形成的不同条件的方法。还讨论了主要代谢物转化为母体药物的无效循环。这些结果强调了这样一个事实,即人类体内酶的立体特异性通常不同于其他实验室研究的物种。
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The main metabolic pathway of oracin, a new potential cytostatic drug, in human liver microsomes and cytosol: stereoselectivity of reoxidation of the principal metabolite 11-dihydrooracin to oracin.

Chirality is a prominent feature of most biological processes. The intrinsic asymmetry of receptors, enzymes, and other endogenous macromolecules represents the basis for biological discrimination between the stereoisomeric forms of all foreign compounds in organism. Stereoselectivity and stereospecificity, two principal chiral attributes of enzyme activity, play important role in biotransformation process of drugs and other xenobiotics. The stereospecificity of enzymes leads to the preferential formation of certain enantiomer, the stereoselectivity of enzymes, on the other hand, expresses the preference of one stereoisomer form of substrate for subsequent biotransformation. An approach to the study of different conditions for the formation of the two enantiomers of principal metabolite of potential cytostatic drug oracin in Man in vitro is described. The futile cycle, in which the principal metabolite is converted to the parent drug, is also discussed. The results emphasise the fact that the stereospecificity of enzymes in Man is often distinct from other laboratory species studied.

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