分离的前庭神经上皮细胞的解剖和功能研究。

IF 4 3区 医学 Q2 CELL BIOLOGY
Disease Models & Mechanisms Pub Date : 2025-04-01 Epub Date: 2025-04-15 DOI:10.1242/dmm.052224
Hannah R Drury, Melissa A Tadros, Robert J Callister, Alan M Brichta, Robert Eisenberg, Rebecca Lim
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引用次数: 0

摘要

手术切除前庭终末器官是治疗顽固性msamuires病(MD)的最后选择。我们描述了从MD患者手术切除的前庭神经上皮的使用:1)使用免疫组织化学对毛细胞和神经纤维标记物进行解剖研究;2)使用电压激活电流的电生理记录进行功能研究。我们的数据显示壶腹嵴前庭毛细胞的大量减少和紊乱,而神经纤维与剩余的感觉受体接触,但在毛细胞缺失的区域显得很薄。存活毛细胞电压激活钾电流的电生理记录显示I型和II型前庭毛细胞活动正常。来自I型前庭毛细胞的电流-电压图与周围花萼传入终端的存在一致。这些数据表明,在MD患者中取样的存活毛细胞仍然具有功能,能够向中枢神经系统传递感觉信息。确定前庭受体和神经的功能对于前庭植入研究以恢复MD患者的平衡至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anatomical and functional studies of vestibular neuroepithelia from patients with Ménière's disease.

Surgical removal of vestibular end organs is a final treatment option for people with intractable Ménière's disease (MD). Here, we used surgically excised vestibular neuroepithelium from patients with MD for (1) anatomical investigation of hair cell and nerve fibre markers using immunohistochemistry, and (2) functional studies using electrophysiological recordings of voltage-activated currents. Our data show considerable reduction in and disorganisation of vestibular hair cells in the cristae ampullares. Nerve fibres maintain contact with remaining sensory receptors but appear thin in regions in which hair cells are absent. Electrophysiological recordings of voltage-activated potassium currents from surviving hair cells demonstrated normal activity in both type I and type II vestibular hair cells. Current-voltage plots from type I vestibular hair cells are consistent with the presence of a surrounding calyx afferent terminal. These data indicate that the surviving hair cells that were sampled in patients with MD remain functional and capable of transmitting sensory information to the central nervous system. Determining functionality of vestibular receptors and nerves is critical for vestibular implant research to restore balance in people with MD.

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来源期刊
Disease Models & Mechanisms
Disease Models & Mechanisms 医学-病理学
CiteScore
6.60
自引率
7.00%
发文量
203
审稿时长
6-12 weeks
期刊介绍: Disease Models & Mechanisms (DMM) is an online Open Access journal focusing on the use of model systems to better understand, diagnose and treat human disease.
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