涉及细胞色素p450酶的草药相互作用:一个小回顾。

Rupika Delgoda, Andrew C G Westlake
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引用次数: 133

摘要

一种药物的代谢可以被另一种药物或外来化学物质改变,这种相互作用通常具有临床意义。细胞色素P450 (CYP)酶是一种主要存在于肝脏中的酶超家族,参与大量异种生物的代谢,并已被证明参与药物与食物、草药和其他药物之间的许多相互作用。观察到天然产物在处方药物作用下对CYP酶的诱导和抑制作用(除其他原因外)导致人们普遍接受自然疗法可能有不利影响,这与积极实践民族医学的国家的普遍看法相反。像圣约翰草、大蒜、胡椒碱、人参、银杏等可以在柜台上免费获得的草药,在与处方药共同使用时,会产生严重的临床相互作用。这样的逆境刺激了对一系列其他草药的各种临床前和体外研究,其临床相关性有待建立。尽管草药、食品和膳食补充剂中存在许多活性成分,使实验复杂化,但可观察到的与CYP酶的相互作用需要系统的研究,以便更容易地预测和避免基于代谢的相互作用。本文强调了CYP酶在代谢相关药物-草药相互作用中的作用,以及获得基于机制的理解以避免潜在药物不良反应的重要性,此外还概述了其他可能导致这一重要健康问题的因素,如药物遗传学和娱乐习惯。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Herbal interactions involving cytochrome p450 enzymes: a mini review.

The metabolism of a drug can be altered by another drug or foreign chemical, and such interactions can often be clinically significant. Cytochrome P450 (CYP) enzymes, a superfamily of enzymes found mainly in the liver, are involved in the metabolism of a plethora of xenobiotics and have been shown to be involved in numerous interactions between drugs and food, herbs and other drugs. The observed induction and inhibition of CYP enzymes by natural products in the presence of a prescribed drug has (among other reasons) led to the general acceptance that natural therapies can have adverse effects, contrary to the popular beliefs in countries where there is an active practice of ethnomedicine. Herbal medicines such as St. John's wort, garlic, piperine, ginseng, and gingko, which are freely available over the counter, have given rise to serious clinical interactions when co-administered with prescription medicines. Such adversities have spurred various pre-clinical and in vitro investigations on a series of other herbal remedies, with their clinical relevance remaining to be established. Although the presence of numerous active ingredients in herbal medicines, foods and dietary supplements complicate experimentation, the observable interactions with CYP enzymes warrant systematic studies, so that metabolism-based interactions can be predicted and avoided more readily. This article highlights the involvement of CYP enzymes in metabolism-related drug-herb interactions and the importance of gaining a mechanism-based understanding to avoid potential adverse drug reactions, in addition to outlining other contributory factors, such as pharmacogenetics and recreational habits that may compound this important health issue.

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