...
首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Riluzole rescues cochlear sensory cells from acoustic trauma in the guinea-pig.
【24h】

Riluzole rescues cochlear sensory cells from acoustic trauma in the guinea-pig.

机译:利鲁唑从豚鼠的听觉创伤中拯救了耳蜗感觉细胞。

获取原文
获取原文并翻译 | 示例

摘要

Acoustic trauma is the major cause of hearing loss in industrialised nations. We show in guinea-pigs that sound exposure (6 kHz, 120 dB sound pressure level for 30 min) leads to sensory cell death and subsequent permanent hearing loss. Ultrastructural analysis reveals that degeneration of the noise-damaged hair cells involved different mechanisms, including typical apoptosis, autolysis and, to a lesser extent, necrosis. Whatever the mechanisms, a common feature of noise damage to hair cells was mitochondrial alteration. Riluzole (2-amino-6-trifluoromethoxy benzothiazole) is a neuroprotective agent that prevents apoptosis- and necrosis-induced cell death. Perfusion of riluzole into the cochlea via an osmotic minipump prevents mitochondrial damage and subsequent translocation of cytochrome c, DNA fragmentation, and hair cell degeneration. This was confirmed by functional tests showing a clear dose-dependent reduction (ED(50)=16.8 &mgr;M) of permanent hearing loss and complete protection at 100 &mgr;M. Although less efficient than intracochlear perfusion, intraperitoneal injection of riluzole rescues the cochlea within a therapeutic window of 24 h after acoustic trauma.These results show that riluzole is able to prevent and rescue the cochlea from acoustic trauma. It may thus be an interesting molecule for the treatment of inner ear injuries.
机译:声学创伤是工业化国家听力损失的主要原因。我们在豚鼠中显示,声音暴露(6 kHz,30分钟内120 dB声压级)会导致感觉细胞死亡和随后的永久性听力损失。超微结构分析表明,受噪声破坏的毛细胞的变性涉及不同的机制,包括典型的细胞凋亡,自溶以及较小程度的坏死。无论采用哪种机制,对毛细胞造成噪声损害的一个共同特征就是线粒体改变。利鲁唑(2-氨基-6-三氟甲氧基苯并噻唑)是一种神经保护剂,可防止凋亡和坏死诱导的细胞死亡。通过渗透微型泵将利鲁唑灌注到耳蜗中可防止线粒体损伤和随后的细胞色素c移位,DNA片段化以及毛细胞变性。功能测试证实了这一点,该测试显示永久性听力损失有明显的剂量依赖性降低(ED(50)= 16.8μM),并且在100μM时可以完全保护。尽管比耳蜗内灌注的效率低,但腹膜内注射利鲁唑可在声损伤后的24小时治疗窗内抢救耳蜗。这些结果表明利鲁唑能够预防和挽救耳蜗免受声损伤的影响。因此,它可能是治疗内耳损伤的有趣分子。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号