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巨噬细胞介导的免疫反应会加重由耳蜗毛细胞线粒体动力学紊乱所导致的听力功能障碍。

Macrophage-mediated immune response aggravates hearing disfunction caused by the disorder of mitochondrial dynamics in cochlear hair cells.

作者信息

Zhang Yuan, Fu Xiaolong, Li Yiyuan, Li Wen, Hong Guodong, Guo Siwei, Xiao Yu, Liu Ziyi, Ding Shuqin, Bi Xiuli, Ye Fanglei, Jin Jin, Chai Renjie

机构信息

State Key Laboratory of Bioelectronics, Department of Otolaryngology Head and Neck Surgery, Zhongda Hospital, Jiangsu Province High-Tech Key Laboratory for Bio-Medical Research, Southeast University,87# Dingjiaqiao, Nanjing 210096, China.

Co-Innovation Center of Neuroregeneration, Nantong University, Nantong 226001, China.

出版信息

Hum Mol Genet. 2023 Mar 20;32(7):1137-1151. doi: 10.1093/hmg/ddac270.

Abstract

Mitochondrial dynamics is essential for maintaining the physiological function of the mitochondrial network, and its disorders lead to a variety of diseases. Our previous study identified mitochondrial dynamics controlled anti-tumor immune responses and anxiety symptoms. However, how mitochondrial dynamics affects auditory function in the inner ear remains unclear. Here, we show that the deficiency of FAM73a or FAM73b, two mitochondrial outer membrane proteins that mediate mitochondrial fusion, leads to outer hair cells (HCs) damage and progressive hearing loss in FVB/N mice. Abnormal mitochondrial fusion causes elevated oxidative stress and apoptosis of HCs in the early stage. Thereafter, the activation of macrophages and CD4+ T cell is found in the mutant mice with the increased expression of the inflammatory cytokines IL-12 and IFN-γ compared with control mice. Strikingly, a dramatically decreased number of macrophages by Clophosome®-A-Clodronate Liposomes treatment alleviates the hearing loss of mutant mice. Collectively, our finding highlights that FAM73a or FAM73b deficiency affects HCs survival by disturbing the mitochondrial function, and the subsequent immune response in the cochleae worsens the damage of HCs.

摘要

线粒体动力学对于维持线粒体网络的生理功能至关重要,其功能紊乱会导致多种疾病。我们之前的研究发现线粒体动力学可控制抗肿瘤免疫反应和焦虑症状。然而,线粒体动力学如何影响内耳的听觉功能仍不清楚。在此,我们表明,FAM73a或FAM73b这两种介导线粒体融合的线粒体外膜蛋白的缺失,会导致FVB/N小鼠外毛细胞(HCs)损伤和进行性听力丧失。异常的线粒体融合在早期会导致氧化应激升高和HCs凋亡。此后,在突变小鼠中发现巨噬细胞和CD4+T细胞被激活,与对照小鼠相比,炎性细胞因子IL-12和IFN-γ的表达增加。引人注目的是,用氯膦酸脂质体(Clophosome®-A-Clodronate Liposomes)处理使巨噬细胞数量显著减少,从而减轻了突变小鼠的听力损失。总的来说,我们的研究结果表明,FAM73a或FAM73b的缺失通过干扰线粒体功能影响HCs的存活,随后耳蜗中的免疫反应会加剧HCs的损伤。

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