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Sudden asymmetric bilateral ptosis as stroke onset

机译:突发性不对称双侧上睑下垂作为中风发作

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摘要

Cytochrome P450 3A4 (CYP3A4) is the major and most important drugmetabolizing enzyme in humans that oxidizes and clears over a half of all administered pharmaceuticals. This is possible because CYP3A4 is promiscuous with respect to substrate binding and has the ability to catalyze diverse oxidative chemistries in addition to traditional hydroxylation reactions. Furthermore, CYP3A4 binds and oxidizes a number of substrates in a cooperative manner and can be both induced and inactivated by drugs. In vivo, CYP3A4 inhibition could lead to undesired drug-drug interactions and drug toxicity, a major reason for late-stage clinical failures and withdrawal of marketed pharmaceuticals. Owing to its central role in drug metabolism, many aspects of CYP3A4 catalysis have been extensively studied by various techniques. Here, we give an overview of experimental and theoretical methods currently used for investigation and prediction of CYP3A4-ligand interactions, a defining factor in drug metabolism, with an emphasis on the problems addressed and conclusions derived from the studies.
机译:细胞色素P450 3A4(CYP3A4)是人类主要和最重要的药物代谢酶,可氧化和清除所有给药药物的一半以上。这是可能的,因为CYP3A4在底物结合方面是混杂的,除了传统的羟基化反应外,还具有催化多种氧化化学的能力。此外,CYP3A4以协同方式结合并氧化许多底物,并且可以被药物诱导和灭活。在体内,CYP3A4的抑制作用可能导致不良的药物相互作用和药物毒性,这是后期临床失败和撤出市售药物的主要原因。由于其在药物代谢中的重要作用,CYP3A4催化的许多方面已通过各种技术进行了广泛研究。在这里,我们概述了目前用于调查和预测CYP3A4-配体相互作用(药物代谢中的决定性因素)的实验和理论方法,重点是解决的问题和研究得出的结论。

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