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Minocycline attenuates colistin-induced neurotoxicity via suppression of apoptosis mitochondrial dysfunction and oxidative stress

机译:米诺环素通过抑制细胞凋亡线粒体功能障碍和氧化应激来减轻粘菌素诱导的神经毒性

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摘要

>Background: Neurotoxicity is an adverse effect patients experience during colistin therapy. The development of effective neuroprotective agents that can be co-administered during polymyxin therapy remains a priority area in antimicrobial chemotherapy. The present study investigates the neuroprotective effect of the synergistic tetracycline antibiotic minocycline against colistin-induced neurotoxicity. >Methods: The impact of minocycline pretreatment on colistin-induced apoptosis, caspase activation, oxidative stress and mitochondrial dysfunction were investigated using cultured mouse neuroblastoma-2a (N2a) and primary cortical neuronal cells. >Results: Colistin-induced neurotoxicity in mouse N2a and primary cortical cells gives rise to the generation of reactive oxygen species (ROS) and subsequent cell death via apoptosis. Pretreatment of the neuronal cells with minocycline at 5, 10 and 20 μM for 2 h prior to colistin (200 μM) exposure (24 h), had an neuroprotective effect by significantly decreasing intracellular ROS production and by upregulating the activities of the anti-ROS enzymes superoxide dismutase and catalase. Minocycline pretreatment also protected the cells from colistin-induced mitochondrial dysfunction, caspase activation and subsequent apoptosis. Immunohistochemical imaging studies revealed colistin accumulates within the dendrite projections and cell body of primary cortical neuronal cells. >Conclusions: To our knowledge, this is first study demonstrating the protective effect of minocycline on colistin-induced neurotoxicity by scavenging of ROS and suppression of apoptosis. Our study highlights that co-administration of minocycline kills two birds with one stone: in addition to its synergistic antimicrobial activity, minocycline could potentially ameliorate unwanted neurotoxicity in patients undergoing polymyxin therapy.
机译:>背景:神经毒性是大肠菌素治疗期间患者的不良反应。可以在多粘菌素治疗期间共同给药的有效神经保护剂的开发仍然是抗菌化学疗法的优先领域。本研究调查协同四环素抗生素米诺环素对粘菌素诱导的神经毒性的神经保护作用。 >方法:使用培养的小鼠神经母细胞瘤2a(N2a)和原代皮层神经元细胞研究了米诺环素预处理对粘菌素诱导的细胞凋亡,胱天蛋白酶激活,氧化应激和线粒体功能障碍的影响。 >结果: Colistin诱导的小鼠N2a和原代皮层细胞神经毒性导致活性氧(ROS)的产生以及随后的细胞凋亡引起的细胞死亡。在粘菌素(200μm)暴露(24μh)之前,先用5、10和20μmM的米诺环素预处理神经元细胞2h,然后显着降低细胞内ROS的产生并上调抗ROS的活性,从而具有神经保护作用。酶超氧化物歧化酶和过氧化氢酶。 Minocycline预处理还可以保护细胞免受粘菌素诱导的线粒体功能障碍,胱天蛋白酶激活和随后的细胞凋亡。免疫组织化学成像研究表明大肠粘菌素积聚在初级皮层神经元细胞的树突状突起和细胞体内。 >结论:据我们所知,这是第一项研究,证明米诺环素通过清除ROS和抑制细胞凋亡对粘菌素诱导的神经毒性具有保护作用。我们的研究突出表明,米诺环素的共同给药可以杀死一只鸟,从而杀死两只鸟:除了具有协同抗菌活性外,米诺环素还可以改善接受多粘菌素治疗的患者的不良神经毒性。

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