Sirvent Pascal, Mercier Jacques, Lacampagne Alain
INSERM, ER I25, F-34295 Montpellier, France.
Curr Opin Pharmacol. 2008 Jun;8(3):333-8. doi: 10.1016/j.coph.2007.12.010. Epub 2008 Feb 1.
Statin drugs represent a major improvement in the treatment of hypercholesterolemia that constitutes the main origin of atherosclerosis, leading to coronary heart disease. Besides the tremendous beneficial effects of statins, various forms of muscular toxicity (myalgia, cramp, exercise intolerance, fatigability) occur frequently. Many hypotheses were proposed to explain statin myotoxicity. The goal of this review is to highlight some of the most recent findings that can account for interpreting the pathophysiological mechanisms for statin-induced myotoxicity. Statin-induced myotoxicity appears multifactorial. Apart from the deleterious effect due to a reduction in cholesterol biosynthesis, statins have a direct effect on the respiratory chain of the mitochondria. It is proposed that mitochondrial impairment leads to a mitochondrial calcium leak that directly interferes with the regulation of sarcoplasmic reticulum calcium cycling without excluding a direct effect of statin on the sarcoplasmic reticulum. Both mitochondrial and calcium impairments may account for apoptosis process, oxidative stress, and muscle remodeling and degeneration that have been extensively reported to explain statin myotoxicity and functional symptoms described by treated patients.
他汀类药物是高胆固醇血症治疗的重大进展,高胆固醇血症是动脉粥样硬化的主要根源,可导致冠心病。除了他汀类药物的巨大有益作用外,各种形式的肌肉毒性(肌痛、痉挛、运动不耐受、易疲劳)也经常出现。人们提出了许多假说来解释他汀类药物的肌毒性。本综述的目的是强调一些最新发现,这些发现有助于解释他汀类药物诱导肌毒性的病理生理机制。他汀类药物诱导的肌毒性似乎是多因素的。除了胆固醇生物合成减少带来的有害影响外,他汀类药物对线粒体呼吸链有直接作用。有人提出,线粒体损伤会导致线粒体钙泄漏,直接干扰肌浆网钙循环的调节,同时也不排除他汀类药物对肌浆网的直接作用。线粒体和钙的损伤都可能导致凋亡过程、氧化应激以及肌肉重塑和退化,这些已被广泛报道用于解释他汀类药物的肌毒性以及接受治疗患者所描述的功能症状。