Endocochlear potential contributes to hair cell death in TMPRSS3 hearing loss.

A Eliot Shearer,Yuan-Siao Chen,Stephanie L Rouse,Xiaohan Wang,Janmaris Marin Fermin,Kevin Ta Booth,Jasmine Moawad,Nicole Bianca Libiran,Jinan Li,Hae-Young Kim,Michael Hoa,Rafal Olszewski,Jing-Yu Lei,Ernesto Cabrera,Douglas J Totten,Bo Zhao,Jeffrey R Holt,Rick F Nelson
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Abstract

Pathogenic variants in the gene TMPRSS3 are a common cause of hearing loss in humans, although the causal mechanisms remain unknown. Previous work has shown that Tmprss3Y260X/Y260X mice exhibit normal hair cell development, mechanosensory transduction, and spiral ganglion patterning, but experience rapid hair cell death from P12 to P14 at the onset of hearing. Here, we demonstrate that Tmprss3Y260X/Y260X mice display an early and temporary spike in endocochlear potential (EP) prior to the onset of hair cell death. In vitro experiments with cochlear explants from Tmprss3Y260X/Y260X mice and in vivo studies with Tmprss3Y260X/Y260X mice crossed with two different mutant models that lacked EP generation promoted hair cell survival. Furthermore, systemic administration of furosemide, a drug that reduces EP in vivo, reduced hair cell death in Tmprss3Y260X/Y260X mice. These findings suggest that extracellular factors, including EP, play a role in TMPRSS3-related hair cell survival and hearing loss, and suggest that modulating EP could be a therapeutic strategy.
耳蜗内电位与TMPRSS3型听力损失中毛细胞死亡有关。
TMPRSS3基因的致病性变异是人类听力损失的常见原因,尽管其因果机制尚不清楚。先前的研究表明,Tmprss3Y260X/Y260X小鼠表现出正常的毛细胞发育、机械感觉转导和螺旋神经节模式,但在听力开始时经历从P12到P14的快速毛细胞死亡。在这里,我们证明Tmprss3Y260X/Y260X小鼠在毛细胞死亡开始之前显示出早期和暂时的耳蜗电位(EP)峰值。体外实验表明,耳蜗外植体Tmprss3Y260X/Y260X小鼠,以及与两种缺乏EP生成的突变体模型杂交的Tmprss3Y260X/Y260X小鼠,均能促进毛细胞的存活。此外,全身给药呋塞米(一种在体内降低EP的药物)可减少Tmprss3Y260X/Y260X小鼠的毛细胞死亡。这些发现表明,包括EP在内的细胞外因子在与tmprss3相关的毛细胞存活和听力损失中发挥作用,并提示调节EP可能是一种治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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