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Math诱导的前庭上皮毛细胞再生过程中的细胞增殖

Cell proliferation during hair cell regeneration induced by Math in vestibular epithelia .

作者信息

Huang Yi-Bo, Ma Rui, Yang Juan-Mei, Han Zhao, Cong Ning, Gao Zhen, Ren Dongdong, Wang Jing, Chi Fang-Lu

机构信息

Department of Otology and Skull Base Surgery, EYE & ENT Hospital of Fudan University; Shanghai Clinical Medical Center of Hearing Medicine; Key Laboratory of Hearing Medicine, Ministry of Health, Shanghai, China.

出版信息

Neural Regen Res. 2018 Mar;13(3):497-501. doi: 10.4103/1673-5374.228734.

Abstract

Hair cell regeneration is the fundamental method of correcting hearing loss and balance disorders caused by hair cell damage or loss. How to promote hair cell regeneration is a hot focus in current research. In mammals, cochlear hair cells cannot be regenerated and few vestibular hair cells can be renewed through spontaneous regeneration. However, Math gene transfer allows a few inner ear cells to be transformed into hair cells in vitro or in vivo. Hair cells can be renewed through two possible means in birds: supporting cell differentiation and transdifferentiation with or without cell division. Hair cell regeneration is strongly associated with cell proliferation. Therefore, this study explored the relationship between Math-induced vestibular hair cell regeneration and cell division in mammals. The mouse vestibule was isolated to harvest vestibular epithelial cells. Ad-Math-enhanced green fluorescent protein (EGFP) was used to track cell division during hair cell transformation. 5-Bromo-2'-deoxyuridine (BrdU) was added to track cell proliferation at various time points. Immunocytochemistry was utilized to determine cell differentiation and proliferation. Results demonstrated that when epithelial cells were in a higher proliferative stage, more of these cells differentiated into hair cells by Math gene transfer. However, in the low proliferation stage, no BrdU-positive cells were seen after Math gene transfer. Cell division always occurred before Math transfection but not during or after Math transfection, when cells were labeled with BrdU before and after Ad-Math-EGFP transfection. These results confirm that vestibular epithelial cells with high proliferative potential can differentiate into new hair cells by Math gene transfer, but this process is independent of cell proliferation.

摘要

毛细胞再生是纠正由毛细胞损伤或缺失引起的听力损失和平衡障碍的基本方法。如何促进毛细胞再生是当前研究的热点。在哺乳动物中,耳蜗毛细胞不能再生,只有少数前庭毛细胞可通过自发再生更新。然而,Math基因转移可使一些内耳细胞在体外或体内转化为毛细胞。在鸟类中,毛细胞可通过两种可能的方式再生:支持细胞分化以及有或无细胞分裂的转分化。毛细胞再生与细胞增殖密切相关。因此,本研究探讨了Math诱导的哺乳动物前庭毛细胞再生与细胞分裂之间的关系。分离小鼠前庭以收获前庭上皮细胞。使用腺病毒介导的Math增强绿色荧光蛋白(EGFP)追踪毛细胞转化过程中的细胞分裂。添加5-溴-2'-脱氧尿苷(BrdU)以追踪不同时间点的细胞增殖。利用免疫细胞化学确定细胞分化和增殖。结果表明,当上皮细胞处于较高增殖阶段时,通过Math基因转移,更多这些细胞分化为毛细胞。然而,在低增殖阶段,Math基因转移后未观察到BrdU阳性细胞。当在腺病毒介导的Math-EGFP转染前后用BrdU标记细胞时,细胞分裂总是发生在Math转染之前,而不是在Math转染期间或之后。这些结果证实,具有高增殖潜力的前庭上皮细胞可通过Math基因转移分化为新的毛细胞,但这一过程与细胞增殖无关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38b5/5900514/df86afe7317e/NRR-13-497-g002.jpg

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