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噪声性听力损失与幼斑马鱼内耳毛细胞减少相关。

Noise-induced hearing loss correlates with inner ear hair cell decrease in larval zebrafish.

机构信息

Institute of Science and Environment, University of Saint Joseph, Macao S.A.R., China.

Departamento de Biología, Universidad de Sevilla, 41012 Sevilla, Spain.

出版信息

J Exp Biol. 2022 Apr 1;225(7). doi: 10.1242/jeb.243743. Epub 2022 Apr 6.

Abstract

Anthropogenic noise can be hazardous for the auditory system and wellbeing of animals, including humans. However, very limited information is known on how this global environmental pollutant affects auditory function and inner ear sensory receptors in early ontogeny. The zebrafish (Danio rerio) is a valuable model in hearing research, including investigations of developmental processes of the vertebrate inner ear. We tested the effects of chronic exposure to white noise in larval zebrafish on inner ear saccular sensitivity and morphology at 3 and 5 days post-fertilization (dpf), as well as on auditory-evoked swimming responses using the prepulse inhibition (PPI) paradigm at 5 dpf. Noise-exposed larvae showed a significant increase in microphonic potential thresholds at low frequencies, 100 and 200 Hz, while the PPI revealed a hypersensitization effect and a similar threshold shift at 200 Hz. Auditory sensitivity changes were accompanied by a decrease in saccular hair cell number and epithelium area. In aggregate, the results reveal noise-induced effects on inner ear structure-function in a larval fish paralleled by a decrease in auditory-evoked sensorimotor responses. More broadly, this study highlights the importance of investigating the impact of environmental noise on early development of sensory and behavioural responsiveness to acoustic stimuli.

摘要

人为噪声可能对包括人类在内的动物的听觉系统和健康造成危害。然而,关于这种全球性环境污染物如何影响听觉功能和内耳感觉受体在个体早期发育中的作用,我们知之甚少。斑马鱼(Danio rerio)是听觉研究的一种有价值的模式生物,包括对脊椎动物内耳发育过程的研究。我们在孵化后 3 和 5 天(dpf)时,通过测量微音器电位阈值,检测了幼鱼在慢性白噪声暴露下对内耳囊敏感性和形态的影响,同时在 5 dpf 时通过声刺激抑制(PPI)范式检测了听觉诱发的游泳反应。与对照组相比,噪声暴露组的幼鱼在低频(100 和 200 Hz)时的微音器电位阈值显著增加,而 PPI 则显示出超敏化效应和 200 Hz 时相似的阈值移位。听觉敏感性的变化伴随着囊状毛细胞数量和上皮面积的减少。总的来说,这些结果表明,在幼鱼中,噪声对内耳结构-功能的影响与听觉诱发的感觉运动反应的下降有关。更广泛地说,这项研究强调了研究环境噪声对声音刺激的早期感觉和行为反应发育的影响的重要性。

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