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Salinomycin induces calpain and cytochrome c-mediated neuronal cell death

机译:沙利霉素可诱导钙蛋白酶和细胞色素c介导的神经元细胞死亡

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Salinomycin is a polyether antibiotic with properties of an ionophore, which is commonly used as cocciodiostatic drug and has been shown to be highly effective in the elimination of cancer stem cells (CSCs) both in vitro and in vivo. One important caveat for the potential clinical application of salinomycin is its marked neural and muscular toxicity. In the present study we show that salinomycin in concentrations effective against CSCs exerts profound toxicity towards both dorsal root ganglia as well as Schwann cells. This toxic effect is mediated by elevated cytosolic Na+ concentrations, which in turn cause an increase of cytosolic Ca2+ by means of Na+/Ca2+ exchangers (NCXs) in the plasma membrane as well as the mitochondria. Elevated Ca2+ then leads to calpain activation, which triggers caspase-dependent apoptosis involving caspases 12, 9 and 3. In addition, cytochrome c released from depolarized mitochondria directly activates caspase 9. Combined inhibition of calpain and the mitochondrial NCXs resulted in significantly decreased cytotoxicity and was comparable to caspase 3 inhibition. These findings improve our understanding of mechanisms involved in the pathogenesis of peripheral neuropathy and are important to devise strategies for the prevention of neurotoxic side effects induced by salinomycin.. ? 2011 Macmillan Publishers Limited
机译:沙利霉素是一种具有离子载体特性的聚醚类抗生素,通常用作抑癌药,并已显示出在体内和体外消除癌症干细胞(CSC)的高效性。盐霉素的潜在临床应用的一个重要警告是其明显的神经和肌肉毒性。在本研究中,我们显示了对CSC有效的浓度的沙利霉素对背根神经节和雪旺氏细胞均具有深远的毒性。这种毒性作用是由细胞内Na + 浓度升高所介导的,而Na + /则引起细胞内Ca 2 + 的增加。质膜和线粒体中的Ca 2 + 交换子(NCXs)。 Ca 2 + 升高会导致钙蛋白酶激活,从而触发caspase依赖性凋亡,涉及caspases 12、9和3。此外,从去极化线粒体释放的细胞色素c直接激活caspase 9。线粒体NCX导致细胞毒性显着降低,与caspase 3抑制作用相当。这些发现增进了我们对周围神经病发病机制的理解,对于设计预防由沙利霉素引起的神经毒性副作用的策略非常重要。 2011 Macmillan Publishers Limited

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