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电穿孔介导的产前基因转移恢复 Slc26a4 敲除小鼠的听力和前庭功能。

Prenatal electroporation-mediated gene transfer restores Slc26a4 knock-out mouse hearing and vestibular function.

机构信息

Departments of Otolaryngology-Head and Neck Surgery Kumamoto University, Graduate School of Medicine, 1-1-1 Honjo, Chuoku, Kumamoto city, Japan.

Department of Otolaryngology, University of Colorado Denver, Anschutz Medical Campus, Aurora, Colorado, USA.

出版信息

Sci Rep. 2019 Nov 29;9(1):17979. doi: 10.1038/s41598-019-54262-3.

Abstract

The otocyst, an anlage of the inner ear, presents an attractive target to study treatment strategies for genetic hearing loss and inner ear development. We have previously reported that electroporation-mediated transuterine gene transfer of Connexin30, utilizing a monophasic pulse into Connexin30 mouse otocysts at embryonic day 11.5, is able to prevent putative hearing deterioration. However, it is not clear whether supplementary gene transfer can rescue significant morphological changes, caused by genetic deficits. In addition, with the transuterine gene transfer technique utilized in our previous report, the survival rate of embryos and their mothers after treatment was low, which became a serious obstacle for effective in vivo experiments. Here, we set out to elucidate the feasibility of supplementation therapy in Slc26a4 deficient mice, utilizing biphasic pulses, optimized by modifying pulse conditions. Modification of the biphasic pulse conditions during electroporation increased the survival rate. In addition, supplementation of the target gene cDNA into the otocysts of homozygous Slc24a4 knockout mice significantly prevented enlargement of the endolymphatic space in the inner ear areas; moreover, it rescued hearing and vestibular function of mice in vivo.

摘要

耳囊,内耳的原基,是研究遗传性听力损失和内耳发育治疗策略的理想靶点。我们之前曾报道过,在胚胎第 11.5 天,利用单相脉冲对 Connexin30 小鼠耳囊进行电穿孔介导的跨胎盘基因转移,可以预防潜在的听力恶化。然而,目前尚不清楚补充基因转移是否可以挽救由遗传缺陷引起的显著形态变化。此外,由于我们之前报告中使用的跨胎盘基因转移技术,治疗后胚胎及其母亲的存活率较低,这成为有效体内实验的严重障碍。在这里,我们着手阐明利用双相脉冲进行补充治疗的可行性,该双相脉冲通过修改脉冲条件进行了优化。电穿孔过程中双相脉冲条件的修改提高了存活率。此外,将靶基因 cDNA 补充到纯合 Slc24a4 敲除小鼠的耳囊中,可显著防止内耳区域内淋巴液空间的扩大;此外,它还挽救了小鼠体内的听力和前庭功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df51/6884448/fe943b00863b/41598_2019_54262_Fig1_HTML.jpg

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