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内耳蜗电位的产生与血管纹中的细胞间通讯有关:对存活的显性斑点小鼠突变体的结构分析

Endocochlear potential generation is associated with intercellular communication in the stria vascularis: structural analysis in the viable dominant spotting mouse mutant.

作者信息

Carlisle L, Steel K, Forge A

机构信息

Institute of Laryngology and Otology, University College, London, United Kingdom.

出版信息

Cell Tissue Res. 1990 Nov;262(2):329-37. doi: 10.1007/BF00309888.

Abstract

Deafness in the viable dominant spotting mouse mutant is due to a primary defect of the stria vascularis which results in absence of the positive endocochlear potential in scala media. Endocochlear potentials were measured and the structure of stria vascularis of mutants with potentials close to zero was compared with that in normal littermate controls by use of morphometric methods. The stria vascularis was significantly thinner in mutants. Marginal cells were not significantly different from controls in terms of volume density or intramembrane particle density but the network density of tight junctions was significantly reduced in the mutants. A virtual absence of gap junctions between basal cells and marginal or intermediate cells was observed, but intramembrane particle density and junctional complexes between adjacent basal cells were not different from controls. The volume density of basal cells was significantly greater in mutants. Intermediate cells accounted for a significantly smaller volume density of the stria vascularis in mutants and had a lower density of intramembrane particles than controls. Melanocytes were not identified in the stria vascularis of mutants. These results suggest that communication between marginal, intermediate and basal cells might be important to the normal function of the stria vascularis.

摘要

存活的显性斑点小鼠突变体中的耳聋是由于血管纹的原发性缺陷,这导致中阶内淋巴电位缺失。测量了内淋巴电位,并使用形态计量学方法将电位接近零的突变体的血管纹结构与正常同窝对照的结构进行了比较。突变体的血管纹明显更薄。边缘细胞在体积密度或膜内颗粒密度方面与对照无显著差异,但突变体中紧密连接的网络密度显著降低。观察到基底细胞与边缘或中间细胞之间几乎没有间隙连接,但相邻基底细胞之间的膜内颗粒密度和连接复合体与对照无差异。突变体中基底细胞的体积密度显著更大。中间细胞在突变体血管纹中的体积密度显著更小,且膜内颗粒密度低于对照。在突变体的血管纹中未发现黑素细胞。这些结果表明,边缘、中间和基底细胞之间的通讯可能对血管纹的正常功能很重要。

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