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首页> 外文期刊>Journal of the Association for Research in Otolaryngology: JARO >Otoprotective Effects of Stephania tetrandra S. Moore Herb Isolate against Acoustic Trauma
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Otoprotective Effects of Stephania tetrandra S. Moore Herb Isolate against Acoustic Trauma

机译:Stephania Tetrandra S. Moore Herb孤立对声学创伤的耳蛋白酶作用

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摘要

Noise is the most common occupational and environmental hazard, and noise-induced hearing loss (NIHL) is the second most common form of sensorineural hearing deficit. Although therapeutics that target the free-radical pathway have shown promise, none of these compounds is currently approved against NIHL by the United States Food and Drug Administration. The present study has demonstrated that tetrandrine (TET), a traditional Chinese medicinal alkaloid and the main chemical isolate of the Stephania tetrandra S. Moore herb, significantly attenuated NIHL in CBA/CaJ mice. TET is known to exert antihypertensive and antiarrhythmic effects through the blocking of calcium channels. Whole-cell patch-clamp recording from adult spiral ganglion neurons showed that TET blocked the transient Ca2+ current in a dose-dependent manner and the half-blocking concentration was 0.6+0.1 mu M. Consistent with previous findings that modulations of calcium-based signaling pathways have both prophylactic and therapeutic effects against neural trauma, NIHL was significantly diminished by TET administration. Importantly, TET has a long-lasting protective effect after noise exposure (48 weeks) in comparison to 2 weeks after noise exposure. The otoprotective effects of TET were achieved mainly by preventing outer hair cell damage and synapse loss between inner hair cells and spiral ganglion neurons. Thus, our data indicate that TET has great potential in the prevention and treatment of NIHL.
机译:噪音是最常见的职业和环境危害,噪声引起的听力损失(NIHL)是最常见的感官听力赤字形式。虽然靶向自由基途径的治疗方法已经表明,但是这些化合物目前没有由美国食品和药物管理局对NIHL批准。本研究表明,Tetrandrine(Tet),中药生物碱和斯蒂芬尼菊属Tetrandra S. Mooreb草药的主要化学分离物,在CBA / CAJ小鼠中显着减弱了NIH1。已知Tet通过阻断钙通道施加抗高血压和抗心律失常效果。来自成人螺旋神经节神经元的全细胞贴片夹具记录显示,TET以剂量依赖性方式阻断瞬时CA2 +电流,并且半阻断浓度为0.6±0.1μm。与先前发现的钙的信号调制一致途径对神经创伤具有预防性和治疗效果,NIHL通过TET给药显着减少。重要的是,在噪声暴露后2周的噪音暴露(48周)后,TET具有持久的保护作用。 TET的耳膜检查效果主要是通过预防外毛细胞损伤和内毛细胞和螺旋神经节神经元之间的突触损失来实现。因此,我们的数据表明,TET在NIHL的预防和治疗方面具有很大的潜力。

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