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他汀类药物的临床反应:可变活性和不良反应的机制。

Clinical response to statins: mechanism(s) of variable activity and adverse effects.

机构信息

Dyslipidemia Center, Niguarda Hospital, Milan, Italy.

出版信息

Ann Med. 2012 Aug;44(5):419-32. doi: 10.3109/07853890.2011.582135. Epub 2011 May 31.

Abstract

Statins represent a major advance in the treatment of hypercholesterolemia, a significant risk factor for atherosclerosis. There is, however, notable interindividual variation in the cholesterolemic response to statins, and the origin of this variability is poorly understood; pharmacogenetics has attempted to determine the role of genetic factors. Myopathy, further, has been reported in a considerable percentage of patients, but the mechanisms underlying muscle injury have yet to be fully characterized. Most statins are the substrates of several cytochrome P450s (CYP). CYP polymorphisms may be responsible for variations in hypolipidemic activity; inhibitors of CYPs, e.g. of CYP3A4, can significantly raise plasma concentrations of several statins, but consequences in terms of clinical efficacy are not uniform. Pravastatin and rosuvastatin are not susceptible to CYP inhibition but are substrates of the organic anion-transporting polypeptide (OATP) 1B1, encoded by the SLCO1B1 gene. Essentially all statins are, in fact, substrates of membrane transporters: SLCO1B1 polymorphisms can decrease the liver uptake, as well as the therapeutic potential of these agents, and may be linked to their muscular side-effects. A better understanding of the mechanisms of statin handling will help to minimize adverse effects and interactions, as well as to improve their lipid-lowering efficiency.

摘要

他汀类药物是治疗高胆固醇血症(动脉粥样硬化的一个重要危险因素)的重大进展。然而,他汀类药物的降脂反应存在显著的个体间差异,其变异的起源尚不清楚;药物遗传学试图确定遗传因素的作用。此外,相当大比例的患者报告有肌病,但肌肉损伤的机制尚未完全阐明。大多数他汀类药物是几种细胞色素 P450(CYP)的底物。CYP 多态性可能导致降脂活性的变化;CYP3A4 的抑制剂等 CYP 抑制剂可显著提高几种他汀类药物的血浆浓度,但在临床疗效方面并不一致。普伐他汀和罗苏伐他汀不受 CYP 抑制的影响,但它们是有机阴离子转运多肽(OATP)1B1 的底物,由 SLCO1B1 基因编码。事实上,所有的他汀类药物都是膜转运体的底物:SLCO1B1 多态性可降低这些药物的肝脏摄取和治疗潜力,并可能与其肌肉副作用有关。更好地了解他汀类药物的作用机制有助于最小化不良反应和相互作用,并提高其降脂效率。

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