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来自内毛细胞的内侧钾离子循环途径的证据。

Evidence for a medial K+ recycling pathway from inner hair cells.

作者信息

Spicer S S, Schulte B A

机构信息

Department of Pathology and Laboratory Medicine, Medical University of South Carolina, Charleston 29425, USA.

出版信息

Hear Res. 1998 Apr;118(1-2):1-12. doi: 10.1016/s0378-5955(98)00006-9.

Abstract

K+ effluxed from outer hair cells and their nerves is thought to flow laterally to strial marginal cells for recycling into scala media. Observations reported here provide evidence that K+ effluxed from inner hair cells and inner radial nerves travels medially through border cells, inner sulcus cells (ISCs), limbal fibrocytes and interdental cells (IDCs) for return to endolymph. Morphologic features of ISCs in the medial route resembled those of Hensen and Claudius cells in the lateral indicating an ion transport role for ISCs like that of Hensen and Claudius cells. Na,K-ATPase in plasmalemma of IDCs testified to their capacity to resorb and transport K+ through their known gap junctions. IDCs were differentiated into three subgroups. The most lateral IDCs formed short and long columns. Long columns contacted the medialmost ISC inferiorly and the undersurface of the tectorial membrane superiorly providing thereby a potential transcellular route for K+ transit from ISCs to endolymph. Short columns faced inner sulcus below and tectorial membrane above and accordingly possessed cells with opposite polarity at the bottom and top of the column. Short columns thus appeared situated to resorb electrolytes from limbal stroma for release into inner sulcus and beneath tectorial membrane at opposite ends of the column. The central IDCs were positioned for resorbing and transporting K+ effluxing from the Na,K-ATPase-rich stellate fibrocytes which spread toward the IDCs from near the inner sulcus. The most medial IDCs lined cuplike invaginations near the attachment of Reissner's membrane and lay apposed to light fibrocytes located between supralimbal fibrocytes and the medial IDCs. Content of Na,K-ATPase and position in the K+ transport route likened the limbal stellate fibrocytes to the spiral ligament type II fibrocytes and supralimbal fibrocytes to suprastrial fibrocytes in the lateral wall. From content of creatine kinase and position in the transport path, limbal light fibrocytes appeared analogous to spiral ligament type I fibrocytes. The additional finding that limbal fibrocytes showed unchanged or upregulated Na,K-ATPase immunoreactivity in aged gerbils with strial atrophy provided further evidence for an independent medial transport route and for the survival of inner hair cells in presbyacusis.

摘要

从外毛细胞及其神经流出的钾离子被认为横向流动到血管纹边缘细胞,以便再循环到中阶。本文报道的观察结果提供了证据,表明从内毛细胞和内放射状神经流出的钾离子通过边界细胞、内沟细胞(ISC)、边缘纤维细胞和齿间细胞(IDC)向内侧流动,以返回内淋巴。内侧途径中ISC的形态特征类似于外侧的亨森细胞和克劳迪乌斯细胞,表明ISC与亨森细胞和克劳迪乌斯细胞一样具有离子转运作用。IDC质膜中的钠钾ATP酶证明了它们通过已知的缝隙连接重吸收和转运钾离子的能力。IDC可分为三个亚组。最外侧的IDC形成短柱和长柱。长柱向下接触最内侧的ISC,向上接触盖膜的下表面,从而为钾离子从ISC转运到内淋巴提供了一条潜在的跨细胞途径。短柱下方面对内沟,上方面对盖膜,因此在柱的底部和顶部具有极性相反的细胞。因此,短柱似乎位于从边缘基质吸收电解质,然后在柱的两端释放到内沟和盖膜下方。中央IDC的位置用于重吸收和转运从富含钠钾ATP酶的星状纤维细胞流出的钾离子,这些星状纤维细胞从内沟附近向IDC扩散。最内侧的IDC排列在靠近Reissner膜附着处的杯状凹陷处,并与位于上边缘纤维细胞和内侧IDC之间的亮纤维细胞相邻。钠钾ATP酶的含量以及在钾离子转运途径中的位置,使边缘星状纤维细胞类似于外侧壁的螺旋韧带II型纤维细胞,上边缘纤维细胞类似于血管纹上纤维细胞。从肌酸激酶的含量和在转运途径中的位置来看,边缘亮纤维细胞似乎类似于螺旋韧带I型纤维细胞。另外的发现是,在患有血管纹萎缩的老年沙鼠中,边缘纤维细胞的钠钾ATP酶免疫反应性未改变或上调,这为独立的内侧转运途径以及老年性聋中内毛细胞的存活提供了进一步的证据。

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