Department of Membrane Transport and Biopharmaceutics, and Drug Metabolism and Toxicology, Faculty of Pharmaceutical Sciences, Kanazawa University, Kakuma-machi, Kanazawa 920-1192, Japan.
Department of Membrane Transport and Biopharmaceutics, and Drug Metabolism and Toxicology, Faculty of Pharmaceutical Sciences, Kanazawa University, Kakuma-machi, Kanazawa 920-1192, Japan.
J Pharm Sci. 2017 Sep;106(9):2873-2880. doi: 10.1016/j.xphs.2017.04.005. Epub 2017 Apr 21.
Skeletal muscle toxicity including rhabdomyolysis in severe case is a major side effect of low-density lipoprotein cholesterol-lowering statin drugs. We, therefore, aimed at exploring microRNA (miRNA) expression to understand molecular mechanism of statin-induced toxicity. miRNA expression profiling assay for cerivastatin (1 μM for 48 h)-treated RD cells showed more than 2-fold decrease in 26 miRNA expressions with miR-145 being downregulated prominently. When RD cells were treated with cerivastatin at 10 μM for 36 h, mitochondrial dysfunction was observed in 49.6% of the population without causing apoptosis, whereas 82% underwent apoptosis when treated at 10 μM for 48 h. In RD cells treated under the same condition (10 μM for 48 h), miR-145 expression and mRNA expressions of proapoptotic APAF1 and CASP10 genes, potential targets of miR-145, significantly decreased and increased, respectively. Moreover, enforced expression of miR-145 reduced apoptotic cell population of cerivastatin-treated RD cells (10 μM for 36 h). Because miR-145 increased in extracellular medium from cerivastatin-treated RD cells, miR-145 was suggested to be secreted in response to statin-induced toxicity. These results provide a new rationale for statin's toxicity that statin-induced apoptosis is caused by enhanced expression of proapoptotic genes mediated by decreased intracellular miR-145 due to statin-induced mitochondrial dysfunction.
横纹肌溶解症等骨骼肌肉毒性是降低低密度脂蛋白胆固醇的他汀类药物的主要副作用。因此,我们旨在探索 microRNA(miRNA)表达,以了解他汀类药物诱导毒性的分子机制。用西立伐他汀(1 μM,48 小时)处理 RD 细胞的 miRNA 表达谱分析显示,超过 26 种 miRNA 的表达减少了 2 倍以上,其中 miR-145 明显下调。当 RD 细胞用西立伐他汀在 10 μM 下处理 36 小时时,观察到 49.6%的细胞出现线粒体功能障碍,但在 10 μM 下处理 48 小时时,82%的细胞发生凋亡。在相同条件下(10 μM,48 小时)处理的 RD 细胞中,miR-145 表达和潜在靶基因 APAF1 和 CASP10 的 mRNA 表达分别显著降低和升高。此外,miR-145 的强制表达减少了西立伐他汀处理的 RD 细胞的凋亡细胞群(10 μM,36 小时)。因为从西立伐他汀处理的 RD 细胞中释放出更多的 miR-145,因此推测 miR-145 是对他汀类药物诱导的毒性的反应而分泌的。这些结果为他汀类药物的毒性提供了一个新的依据,即他汀类药物诱导的凋亡是由他汀类药物诱导的线粒体功能障碍导致细胞内 miR-145 减少,从而增强了促凋亡基因的表达引起的。