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首页> 外文期刊>Medical science monitor: international medical journal of experimental and clinical research >A new oral otoprotective agent. part 1: Electrophysiology data from protection against noise-induced hearing loss
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A new oral otoprotective agent. part 1: Electrophysiology data from protection against noise-induced hearing loss

机译:一种新的口服耳保护剂。第 1 部分:噪声性听力损失保护的电生理学数据

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Background: Data from animal studies show that antioxidants can compensate against noise-induced stress and sensory hair cell death. The aim of this study was to evaluate the otoprotection efficacy of various versions of orally administered Acuval 400? against noise damage in a rat animal model. Material/Methods: Fifty-five Sprague Dawley rats were divided into 4 groups: A) noise-exposed animals; B) animals exposed to noise and treated with the Acuval; C) animals exposed to noise and treated with a combination of Coenzyme Q10 and Acuval; D) animals treated only with Acuval and Coenzyme Q10 and with no exposure to noise. All solutions were administered orally 5 times: 24 and 2 hrs prior to noise exposure, and then daily for 3 days. The auditory function was assessed by measuring auditory brainstem responses (ABR) in the range from 2 to 32 kHz at times =1, 7, 14 and 21 days after noise exposure. Results: At low frequencies (click and 4 kHz) animals from both A and B groups showed significant threshold shifts in the majority of the tested frequencies and tested times. For the same frequencies, animals from group C presented threshold levels similar to those from group D. At frequencies ≥8 kHz the protective performance of the 2 Acuval groups is more clearly distinguished from the noise group A. At 32 kHz the 2 Acuval groups perform equally well in terms of otoprotection. Animals in Group D did not show any significant differences in the hearing threshold during the experiment. Conclusions: The data of this study suggest that a solution containing Coenzyme Q10 and Acuval 400?, administered orally, protects from noise-induced hearing loss.
机译:背景:来自动物研究的数据表明,抗氧化剂可以补偿噪音引起的压力和感觉毛细胞死亡。本研究的目的是评估各种版本的口服 Acuval 400?对抗大鼠动物模型中的噪声损伤。材料/方法:将 55 只 Sprague Dawley 大鼠分为 4 组:A) 暴露于噪音的动物;B) 暴露于噪音并用 Acuval 治疗的动物;C)暴露于噪音并用辅酶Q10和Acuval组合处理的动物;D) 仅用 Acuval 和辅酶 Q10 处理且不暴露于噪音的动物。所有溶液口服 5 次:在噪声暴露前 24 小时和 2 小时,然后每天给药 3 天。通过测量 2 至 32 kHz 范围内的听觉脑干反应 (ABR) 来评估听觉功能,有时 =1、7、14 和 21 天后 =1、7、14 和 21 天。结果:在低频(咔嗒声和 4 kHz)下,来自 A 组和 B 组的动物在大多数测试频率和测试时间中都表现出显着的阈值偏移。对于相同的频率,C组的动物表现出与D组相似的阈值水平。在≥8 kHz频率下,2个Acuval组的保护性能与噪声组A的保护性能更明显。在 32 kHz 时,2 个 Acuval 组在耳保护方面表现同样出色。D组动物在实验期间的听力阈值没有显示出任何显着差异。结论:本研究的数据表明,口服含有辅酶Q10和Acuval 400?的溶液可防止噪声引起的听力损失。

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