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鼠出生后半规管 I 型毛细胞中 K(+)和 Na(+)电导的发育。

Development of K(+) and Na(+) conductances in rodent postnatal semicircular canal type I hair cells.

机构信息

Department of Otolaryngology, University of Colorado Denver, Aurora, Colorado, USA.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2010 Feb;298(2):R351-8. doi: 10.1152/ajpregu.00460.2009. Epub 2009 Nov 25.

Abstract

The rodent vestibular system is immature at birth. During the first postnatal week, vestibular type I and type II hair cells start to acquire their characteristic morphology and afferent innervation. We have studied postnatal changes in the membrane properties of type I hair cells acutely isolated from the semicircular canals (SCC) of gerbils and rats using whole cell patch clamp and report for the first time developmental changes in ionic conductances in these cells. At postnatal day (P) 5 immature hair cells expressed a delayed rectifier K(+) conductance (G(DR)) which activated at potentials above approximately -50 mV in both species. Hair cells also expressed a transient Na(+) conductance (G(Na)) with a mean half-inactivation of approximately -90 mV. At P6 in rat and P7 in gerbil, a low-voltage activated K(+) conductance (G(K,L)) was first observed and conferred a low-input resistance, typical of adult type I hair cells, on SCC type I hair cells. G(K,L) expression in hair cells increased markedly during the second postnatal week and was present in all rat type I hair cells by P14. In gerbil hair cells, G(K,L) appeared later and was present in all type I hair cells by P19. During the third postnatal week, G(Na) expression declined and was absent by the fourth postnatal week in rat and the sixth postnatal week in gerbils. Understanding the ionic changes associated with hair cell maturation could help elucidate development and regeneration mechanisms in the inner ear.

摘要

啮齿动物的前庭系统在出生时尚未发育成熟。在出生后的第一周内,前庭 I 型和 II 型毛细胞开始获得其特征性的形态和传入神经支配。我们使用全细胞膜片钳技术研究了从沙鼠和大鼠的半规管(SCC)急性分离的 I 型毛细胞的膜特性在出生后的变化,并首次报道了这些细胞中离子电导的发育变化。在出生后第 5 天(P),不成熟的毛细胞表达延迟整流钾(K + )电导(G(DR)),在两种物种中均在约-50 mV 以上的电位下激活。毛细胞还表达了具有约-90 mV 的平均半失活的瞬态钠(Na + )电导(G(Na))。在大鼠的 P6 和沙鼠的 P7,首次观察到低电压激活的 K + 电导(G(K,L)),并赋予 SCC I 型毛细胞以成年 I 型毛细胞为特征的低输入电阻。G(K,L)在毛细胞中的表达在出生后的第二周内显著增加,并且在 P14 的所有大鼠 I 型毛细胞中均存在。在沙鼠毛细胞中,G(K,L)出现较晚,并且在 P19 的所有 I 型毛细胞中均存在。在出生后的第三周,G(Na)的表达下降,并在大鼠中于出生后的第四周和沙鼠中于第六周完全消失。了解与毛细胞成熟相关的离子变化可能有助于阐明内耳的发育和再生机制。

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