Department of Audiology and Speech-Language Pathology, MacKay Medical College.
Department of Audiology and Speech-Language Pathology, MacKay Medical College; Institute of Biomedical Sciences, MacKay Medical College;
J Vis Exp. 2023 Feb 10(192). doi: 10.3791/64286.
An animal model of noise-induced hearing loss (NIHL) is useful for pathologists, therapists, pharmacologists, and hearing researchers to thoroughly understand the mechanism of NIHL, and subsequently optimize the corresponding treatment strategies. This study aims to create an improved protocol for developing a mouse model of NIHL. Male C57BL/6J mice were used in this study. Unanesthetized mice were exposed to loud noises (1 and 6 kHz, presented simultaneously at 115-125 dB SPL-A) continuously for 6 h per day for 5 consecutive days. Auditory function was assessed 1 day and 1 week after noise exposure, using auditory brainstem response (ABR). After the ABR measurement, the mice were sacrificed, and their organs of Corti were collected for immunofluorescence staining. From the auditory brainstem response (ABR) measurements, significant hearing loss was observed 1 day after noise exposure. After 1 week, the hearing thresholds of the experimental mice decreased to 80 dB SPL, which was still a significantly higher level than the control mice (40 dB SPL). From the results of immunofluorescence imaging, outer hair cells (OHCs) were shown to be damaged. In summary, we created a model of NIHL using male C57BL/6J mice. A new and simple device for generating and delivering pure-tone noise was developed and then employed. Quantitative measurements of hearing thresholds and morphological confirmation of OHC damage both demonstrated that the applied noise successfully induced an expected hearing loss.
噪声性听力损失(NIHL)动物模型对于病理学家、治疗师、药理学家和听力研究人员来说非常有用,可帮助其深入了解 NIHL 的发病机制,从而优化相应的治疗策略。本研究旨在建立一种改良的噪声性听力损失小鼠模型制作方案。该研究使用雄性 C57BL/6J 小鼠。未麻醉的小鼠连续 5 天每天接受 6 小时的噪声(1 和 6 kHz,同时以 115-125 dB SPL-A 呈现)暴露。在噪声暴露后 1 天和 1 周,使用听觉脑干反应(ABR)评估听觉功能。在 ABR 测量后,处死小鼠并采集耳蜗组织进行免疫荧光染色。从听觉脑干反应(ABR)测量结果来看,噪声暴露后 1 天即观察到明显的听力损失。1 周后,实验小鼠的听力阈值下降至约 80 dB SPL,仍明显高于对照组(约 40 dB SPL)。从免疫荧光成像结果来看,外毛细胞(OHC)受损。综上所述,我们使用雄性 C57BL/6J 小鼠建立了噪声性听力损失模型。开发了一种新型简单的产生和传递纯音噪声的装置,并将其应用于模型中。通过对听力阈值的定量测量和 OHC 损伤的形态学确认,均表明施加的噪声成功地诱导了预期的听力损失。