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Noise-induced Hearing Loss: treatment and prevention

机译:噪声引起的听力损失:治疗和预防

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摘要

Noise-induced hearing loss (NIHL) is one of the most common sensory disabilities in humans. NIHL is ranked as the world's top industrial injury and a significant cause of hearing loss in teenagers, thus affecting many age groups. This research is timely since a recent study has demonstrated that NIHL has increased dramatically in adolescents, with a 30% increase in this group in the past 10 years, thus coining the term “MP3” generation. The implications of the "MP3" generation will lead to increasing long-term health costs and life-long hearing problems necessitating the use of hearing aids from a young age. Research has shown that exposure to acoustic trauma causes an increase in metabolic activity within the inner ear, with a initial peak in free radical production during the acoustic trauma (within hours) followed by a secondary peak at seven to 10 days after the trauma. Free radicals cause decreased cochlear blood flow, excitotoxic neuronal swelling, and induction of cell death within the inner ear. Recent studies have demonstrated that antioxidant treatments can scavenge free radicals and thus attenuate downstream effects of free radical production. While this has been a major breakthrough for NIHL research, the specific roles played by the different classes of free radicals (reactive nitrogen/oxygen species) remains unclear.\udThe aims of this project were:\udAIM 1: To determine whether inhibition of reactive nitrogen species can prevent NIHL, using taurine as a nitric oxide scavenger.\udAIM 2: To establish if there was a dose-dependant response to any effect observed.\udThe research directly addresses a prominent and recognised otolaryngological disease that affects mental and social health. The long-term goal is to develop a pharmaceutical therapy for NIHL to ultimately prevent a debilitating disease and improve human health. Our work also looks at early use of stem cell therapies to repair after acoustic trauma.
机译:噪音诱发的听力损失(NIHL)是人类最常见的感觉障碍之一。 NIHL被列为世界上最严重的工业伤害,是青少年听力损失的重要原因,因此影响了许多年龄段。这项研究是及时的,因为最近的一项研究表明,NIHL在青少年中显着增加,在过去10年中该人群中NIHL增长了30%,因此创造了术语“ MP3”。 “ MP3”一代的含义将导致长期医疗费用增加和终生听力问题,从小就需要使用助听器。研究表明,暴露于听觉创伤会导致内耳内新陈代谢活动增加,在听觉创伤期间(数小时内)自由基产生的最初峰值出现,随后在创伤后7至10天出现次要峰值。自由基导致耳蜗血流量减少,兴奋性神经元肿胀和内耳内细胞死亡的诱导。最近的研究表明,抗氧化剂处理可以清除自由基,从而减弱自由基产生的下游影响。尽管这是NIHL研究的一项重大突破,但尚不清楚不同类别的自由基(反应性氮/氧物质)所起的具体作用。\ ud该项目的目标是:\ ud目标1:确定是否抑制反应性牛磺酸2:建立牛磺酸作为一氧化氮清除剂可以预防NIHL。\ udAIM 2:确定对观察到的任何效应是否存在剂量依赖性反应。\ ud研究直接针对影响心理和社会健康的著名且公认的耳鼻喉疾病。长期目标是开发一种用于NIHL的药物疗法,以最终预防使人衰弱的疾病并改善人类健康。我们的工作还着眼于早期使用干细胞疗法来修复听觉创伤后的修复。

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    Sahota, Raguwinder Singh;

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