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Heat Shock Inhibits both Aminoglycoside- and Cisplatin-Induced Sensory Hair Cell Death

机译:热激抑制氨基糖苷和顺铂诱导的感官毛细胞死亡

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摘要

Human hearing and balance impairments are often attributable to the death of sensory hair cells in the inner ear. These cells are hypersensitive to death induced by noise exposure, aging, and some therapeutic drugs. Two major classes of ototoxic drugs are the aminoglycoside antibiotics and the antineoplastic agent cisplatin. Exposure to these drugs leads to hair cell death that is mediated by the activation of specific apoptotic proteins, including caspases. The induction of heat shock proteins (HSPs) in response to cellular stress is a ubiquitous and highly conserved response that can significantly inhibit apoptosis in some systems by inhibiting apoptotic proteins. Induction of HSPs occurs in hair cells in response to a variety of stimuli. Given that HSPs can directly inhibit apoptosis, we hypothesized that heat shock may inhibit apoptosis in hair cells exposed to ototoxic drugs. To test this hypothesis, we developed a method for inducing HSP expression in the adult mouse utricle in vitro. In vitro heat shock reliably produces a robust up-regulation of HSP-70 mRNA and protein, as well as more modest up-regulation of HSP-90 and HSP-27. The heat shock does not result in death of hair cells. Heat shock has a significant protective effect against both aminoglycoside- and cisplatin-induced hair cell death in the utricle preparation in vitro. These data indicate that heat shock can inhibit ototoxic drug-induced hair cell death, and that the utricle preparation can be used to examine the molecular mechanism(s) underlying this protective effect.
机译:人的听力和平衡障碍通常归因于内耳感觉毛细胞的死亡。这些细胞对噪声暴露,衰老和某些治疗药物引起的死亡高度敏感。耳毒性药物的两大类是氨基糖苷类抗生素和抗肿瘤药顺铂。暴露于这些药物会导致毛细胞死亡,这是由特定凋亡蛋白(包括胱天蛋白酶)的激活介导的。响应细胞应激而诱导的热激蛋白(HSP)是一种普遍存在且高度保守的响应,可以通过抑制凋亡蛋白来显着抑制某些系统的细胞凋亡。响应各种刺激,HSP的诱导在毛细胞中发生。鉴于HSP可以直接抑制细胞凋亡,我们假设热休克可以抑制暴露于耳毒性药物的毛细胞的凋亡。为了验证这一假设,我们开发了一种在体外诱导成年小鼠尿囊中HSP表达的方法。体外热休克可靠地产生了HSP-70 mRNA和蛋白质的强烈上调,以及HSP-90和HSP-27的更适度的上调。热休克不会导致毛细胞死亡。热休克在体外尿囊制剂中对氨基糖苷和顺铂诱导的毛细胞死亡均具有显着的保护作用。这些数据表明,热休克可以抑制耳毒性药物诱导的毛细胞死亡,并且该尿囊制剂可用于检查这种保护作用的分子机制。

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