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鼓室内灌注亮抑酶肽和 Z-VAD-FMK:抗凋亡药物对枪击性听力损失的影响。

Intracochlear perfusion of leupeptin and z-VAD-FMK: influence of antiapoptotic agents on gunshot-induced hearing loss.

机构信息

Institut de Recherches Biomédicales des Armées, 24 avenue des maquis du Grésivaudan, BP 87, 38702 La Tronche, France.

出版信息

Eur Arch Otorhinolaryngol. 2011 Jul;268(7):987-93. doi: 10.1007/s00405-011-1487-0. Epub 2011 Jan 19.

Abstract

The therapeutic efficiency of cochlear infusion of two anti-apoptotic substances: a potent calpain inhibitor, leupeptin and a caspase inhibitor, z-VAD-FMK was evaluated in guinea pigs after a gunshot noise-induced trauma (170 dB SPL). A preliminary study showed that hair cell apoptosis appeared within 7 days of the noise trauma. For each animal, one of the cochleae was perfused directly starting 1 h after the trauma with leupeptin or z-VAD-FMK for 7 days via a mini-osmotic pump whereas the other cochlea was untreated. ABR threshold shifts were measured over a 14-day recovery period. The functional hearing study was supplemented by histological analysis. Two days after the trauma significant differences were observed between threshold shifts in the z-VAD-FMK-treated and the non-treated ears. Cochleograms showed that hair cell losses were significantly lower in z-VAD-FMK-treated ears. Regarding the leupeptin treatment, no significant difference between treated and non-treated ears was observed. This work indicates that early direct infusion of z-VAD-FMK into the cochlea accelerates hearing recovery and reduces hair cell loss after gunshot noise-induced trauma. These results suggest that the gunshot noise-induced trauma may involve the caspase pathway rather than the calpain pathway in the apoptotic process.

摘要

两种抗细胞凋亡物质(强效钙蛋白酶抑制剂亮抑蛋白酶肽和半胱天冬酶抑制剂 z-VAD-FMK)经耳蜗内输注治疗枪震性噪声损伤的疗效评估:豚鼠在遭受 170dB SPL 枪震性噪声损伤后,于第 7 天内出现毛细胞凋亡。初步研究显示,在噪声损伤后 7 天内,其中一只耳蜗经 mini-osmotic 泵直接输注亮抑蛋白酶肽或 z-VAD-FMK 7 天,另一只耳蜗不做任何处理。在 14 天的恢复期间,测量听性脑干反应(ABR)阈值变化。功能听力研究辅以组织学分析。在损伤后第 2 天,z-VAD-FMK 治疗组和未治疗组的阈值变化差异显著。耳蜗图显示,z-VAD-FMK 治疗组的毛细胞损失明显低于未治疗组。关于亮抑蛋白酶肽治疗,治疗组和未治疗组之间没有观察到显著差异。这项工作表明,枪震性噪声损伤后,早期将 z-VAD-FMK 直接输注到耳蜗内可以加速听力恢复并减少毛细胞损失。这些结果表明,枪震性噪声诱导的损伤可能涉及半胱天冬酶途径,而不是钙蛋白酶途径的凋亡过程。

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