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首页> 外文期刊>BioMed research international >Ouabain-Induced Apoptosis in Cochlear Hair Cells and Spiral Ganglion Neurons In Vitro
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Ouabain-Induced Apoptosis in Cochlear Hair Cells and Spiral Ganglion Neurons In Vitro

机译:Ouabain诱导耳蜗毛细胞的细胞凋亡和体外螺旋神经节神经元

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摘要

Ouabain is a common tool to explore the pathophysiological changes in adult mammalian cochlea in vivo. In prior studies, locally administering ouabain via round window membrane demonstrated that the ototoxic effects of ouabain in vivo varied among mammalian species. Little is known about the ototoxic effects in vitro. Thus, we prepared cochlear organotypic cultures from postnatal day-3 rats and treated these cultures with ouabain at 50,500, and 1000 muM for different time to elucidate the ototoxic effects of ouabain in vitro and to provide insights that could explain the comparative ototoxic effects of ouabain in vivo. Degeneration of cochlear hair cells and spiral ganglion neurons was evaluated by hair-cell staining and neurofilament labeling, respectively. Annexin V staining was used to detect apoptotic cells. A quantitative RT-PCR apoptosis-focused gene array determined changes in apoptosis-related genes. The results showed that ouabain-induced damage in vitro was dose and time dependent. 500 muM ouabain and 1000 muM ouabain were destructively traumatic to both spiral ganglion neurons and cochlear hair cells in an apoptotic signal-dependent pathway. The major apoptotic pathways in ouabain-induced spiral ganglion neuron apoptosis culminated in the stimulation of the p53 pathway and triggering of apoptosis by a network of proapoptotic signaling pathways.
机译:Ouabain是一种探讨成人哺乳动物耳蜗在体内病理生理变化的常见工具。在先前的研究中,通过圆形窗膜在局部施用Ouabain展示奥巴ain在哺乳动物种类中变化的耳毒性作用。关于在体外耳毒性效果的众所周知。因此,我们从后期第3大鼠的耳蜗有机型培养物中制备了耳蜗有机型培养物,并在50,500,500,500,500,500,500℃下处理这些培养物,以阐明奥巴班替毒品体外的耳毒性作用,并提供可以解释奥巴宾比较毒毒性作用的见解体内。通过毛细胞染色和神经膜标记评估耳蜗毛细胞和螺旋神经节神经元的退化。 Annexin V染色用于检测凋亡细胞。定量RT-PCR凋亡的聚焦基因阵列确定了凋亡相关基因的变化。结果表明,Oubabain诱导的体外损伤是剂量和时间依赖性。在凋亡的信号依赖性途径中,500毫米瓦巴恩和1000毫安奥巴巴恩对螺旋神经节神经元和耳蜗毛细胞进行破坏性创伤。 Ouabain诱导的螺旋神经节神经元细胞凋亡的主要凋亡途径在P53途径刺激和促凋亡信号通路网络触发凋亡。

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