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人鼻腔上皮细胞纤毛摆动的细胞内氯离子调控:高速视频显微镜观察到的纤毛摆动频率和距离。

Intracellular Cl Regulation of Ciliary Beating in Ciliated Human Nasal Epithelial Cells: Frequency and Distance of Ciliary Beating Observed by High-Speed Video Microscopy.

机构信息

Department of Otolaryngology-Head and Neck Surgery, Graduate School of Medical Science, Kyoto Prefectural University of Medicine, Kyoto 602-8566, Japan.

Research Unit for Epithelial Physiology, Research Organization of Science and Technology, BKC, Ritsumeikan University, Kusatsu 525-8577, Japan.

出版信息

Int J Mol Sci. 2020 Jun 5;21(11):4052. doi: 10.3390/ijms21114052.

Abstract

Small inhaled particles, which are entrapped by the mucous layer that is maintained by mucous secretion via mucin exocytosis and fluid secretion, are removed from the nasal cavity by beating cilia. The functional activities of beating cilia are assessed by their frequency and the amplitude. Nasal ciliary beating is controlled by intracellular ions (Ca, H and Cl), and is enhanced by a decreased concentration of intracellular Cl ([Cl]) in ciliated human nasal epithelial cells (cHNECs) in primary culture, which increases the ciliary beat amplitude. A novel method to measure both ciliary beat frequency (CBF) and ciliary beat distance (CBD, an index of ciliary beat amplitude) in cHNECs has been developed using high-speed video microscopy, which revealed that a decrease in [Cl] increased CBD, but not CBF, and an increase in [Cl] decreased both CBD and CBF. Thus, [Cl] inhibits ciliary beating in cHNECs, suggesting that axonemal structures controlling CBD and CBF may have Cl sensors and be regulated by [Cl]. These observations indicate that the activation of Cl secretion stimulates ciliary beating (increased CBD) mediated via a decrease in [Cl] in cHNECs. Thus, [Cl] is critical for controlling ciliary beating in cHNECs. This review introduces the concept of Cl regulation of ciliary beating in cHNECs.

摘要

小的吸入颗粒被粘液层捕获,粘液层通过粘液分泌和液体分泌由粘液细胞的胞吐作用维持,然后通过纤毛的摆动从鼻腔中清除。纤毛的摆动功能通过其频率和幅度来评估。鼻纤毛的摆动受细胞内离子(Ca、H 和 Cl)的控制,在原代培养的人鼻上皮细胞(cHNECs)中,细胞内 Cl 浓度的降低([Cl])增强了纤毛的摆动,这增加了纤毛的摆动幅度。一种新的方法已经开发出来,使用高速视频显微镜测量 cHNECs 中的纤毛摆动频率(CBF)和纤毛摆动距离(CBD,纤毛摆动幅度的指标),结果显示,[Cl]的降低增加了 CBD,但不增加 CBF,而[Cl]的增加降低了 CBD 和 CBF。因此,[Cl]抑制 cHNECs 中的纤毛摆动,这表明控制 CBD 和 CBF 的轴丝结构可能具有 Cl 传感器,并受[Cl]调节。这些观察表明,Cl 分泌的激活通过降低 cHNECs 中的[Cl]来刺激纤毛摆动(增加 CBD)。因此,[Cl]对控制 cHNECs 中的纤毛摆动至关重要。本文综述了 cHNECs 中 Cl 调节纤毛摆动的概念。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5aaa/7312665/ac247f1609eb/ijms-21-04052-g001.jpg

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