单细胞测序:一种了解听觉障碍病理生理学的强大技术

Maria-Pia Tuset, Matthew D Wiefels, Keelin McKenna, Jeenu Mittal, Chirag Gowda, Rahul Mittal, A. Eshraghi
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引用次数: 0

摘要

内耳转录组的破译使听觉障碍的治疗发展取得了重大突破。单细胞测序(SCS)技术通过分析细胞异质性和鉴定新的基因标记,可以显著提高我们对听觉障碍的认识。SCS的应用使内耳细胞亚型特异性基因靶点的鉴定成为可能,如支持细胞、毛细胞、血管纹细胞和螺旋神经节神经元细胞。SCS为诸如噪声创伤性听力损失、耳毒性、突发性感音神经性听力损失(SSNHL)、前庭神经鞘瘤和急性中耳炎等听觉障碍的病理生理机制提供了新的见解,从而发现了新的治疗靶点。本文的目的是讨论SCS在内耳研究中的应用的最新进展。随着全球倡议努力克服听力损失日益增加的负担,SCS技术在彻底改变听力障碍的管理方面具有巨大潜力,为开发有效的治疗方式铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Single-cell sequencing: a powerful technique to understand the pathophysiology of auditory disorders
Deciphering the inner ear transcriptome has allowed major breakthroughs in therapeutic development for auditory disorders. Single-cell sequencing (SCS) technologies, through the analysis of cellular heterogeneity and the identification of novel gene markers, can significantly enhance our understanding about auditory disorders. The application of SCS has allowed the identification of gene targets specific to the inner ear cellular subtypes such as supporting cells, hair cells, stria vascularis cells, and spiral ganglion neuron cells. SCS has provided new insights into the molecular mechanisms underlying the pathophysiology of auditory disorders such as noise-trauma induced hearing loss, ototoxicity, sudden sensorineural hearing loss (SSNHL), vestibular schwannomas and acute otitis media, leading to the discovery of novel therapeutic targets. The objective of this perspective article is to discuss recent advancements regarding the utilization of SCS for inner ear research. With global initiatives striving to overcome the increasing burden of hearing loss, the SCS technique holds a great potential in revolutionizing the management of auditory disorders, paving the way to develop effective treatment modalities.
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