GJB2基因治疗和条件缺失揭示了发育阶段依赖性内耳结构和功能的影响。

Molecular Therapy. Methods & Clinical Development Pub Date : 2021-10-01 eCollection Date: 2021-12-10 DOI:10.1016/j.omtm.2021.09.009
Jingying Guo, Xiaobo Ma, Jennifer M Skidmore, Jelka Cimerman, Diane M Prieskorn, Lisa A Beyer, Donald L Swiderski, David F Dolan, Donna M Martin, Yehoash Raphael
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引用次数: 10

摘要

编码连接蛋白26的基因GJB2的致病变异是常染色体隐性遗传性耳聋的最常见原因。尽管患病率很高,但导致gjb2相关耳聋的致病机制尚不清楚,并且缺乏治疗方法。患有gjb2相关性耳聋的人至少保留了一些听觉毛细胞和神经元,他们的耳聋通常是稳定的。相比之下,支持细胞中Gjb2条件性缺失的小鼠表现出毛细胞和神经元的广泛缺失,并迅速发展为深度耳聋,阻碍了需要完整耳蜗细胞的治疗的应用。为了设计一个不那么严重的Gjb2动物模型,我们产生了诱导Sox10iCre ERT2介导的Gjb2缺失的小鼠。注射他莫昔芬导致连接蛋白26表达降低和功能受损,但耳蜗毛细胞和神经元存活了2个月,这段时间内可以进行表型拯救尝试。aav介导的GJB2基因转移在成熟突变耳中没有表现出阈值改善,在一些动物中加重了听力损失并导致毛细胞损失。我们认为Sox10iCre ERT2;Gjb2 flox/flox小鼠对耳蜗连接蛋白26的生物学研究具有一定的价值。特别是,这些小鼠可能有助于评估基因治疗载体和开发gjb2相关性耳聋的治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

<i>GJB2</i> gene therapy and conditional deletion reveal developmental stage-dependent effects on inner ear structure and function.

<i>GJB2</i> gene therapy and conditional deletion reveal developmental stage-dependent effects on inner ear structure and function.

<i>GJB2</i> gene therapy and conditional deletion reveal developmental stage-dependent effects on inner ear structure and function.

GJB2 gene therapy and conditional deletion reveal developmental stage-dependent effects on inner ear structure and function.

Pathogenic variants in GJB2, the gene encoding connexin 26, are the most common cause of autosomal-recessive hereditary deafness. Despite this high prevalence, pathogenic mechanisms leading to GJB2-related deafness are not well understood, and cures are absent. Humans with GJB2-related deafness retain at least some auditory hair cells and neurons, and their deafness is usually stable. In contrast, mice with conditional loss of Gjb2 in supporting cells exhibit extensive loss of hair cells and neurons and rapidly progress to profound deafness, precluding the application of therapies that require intact cochlear cells. In an attempt to design a less severe Gjb2 animal model, we generated mice with inducible Sox10iCre ERT2 -mediated loss of Gjb2. Tamoxifen injection led to reduced connexin 26 expression and impaired function, but cochlear hair cells and neurons survived for 2 months, allowing phenotypic rescue attempts within this time. AAV-mediated gene transfer of GJB2 in mature mutant ears did not demonstrate threshold improvement and in some animals exacerbated hearing loss and resulted in hair cell loss. We conclude that Sox10iCre ERT2 ;Gjb2 flox/flox mice are valuable for studying the biology of connexin 26 in the cochlea. In particular, these mice may be useful for evaluating gene therapy vectors and development of therapies for GJB2-related deafness.

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