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沙鼠柯蒂氏器中II型、IX型和V型胶原蛋白的电子显微镜定位

Electron-microscopic localization of type II, IX, and V collagen in the organ of Corti of the gerbil.

作者信息

Slepecky N B, Savage J E, Cefaratti L K, Yoo T J

机构信息

Institute for Sensory Research, Syracuse University, NY 13244-5290.

出版信息

Cell Tissue Res. 1992 Mar;267(3):413-8. doi: 10.1007/BF00319363.

Abstract

The presence of types II, IX and V collagen was probed in the organ of Corti of the adult gerbil cochlea by use of immunocytochemistry at the light- and electron-microscopic levels. Type II collagen is found in the connective tissues of the osseous spiral lamina and spiral limbus. In the region of the sensory hair cells it is present in the tectorial membrane and antibodies bind to the thick unbranched radial fibers. Type IX collagen co-localizes with type II collagen in the tectorial membrane, where antibodies bind to the thick unbranched radial fibers. Type V collagen is present in the connective tissue of the spiral limbus, the osseous spiral lamina, the eighth nerve, and the tectorial membrane. In the tectorial membrane, the staining with antibodies to type V collagen is more diffuse than that seen for types II and IX collagen and antibodies to type V bind to the thin, highly branched fibers in which the thick fibers are embedded. The results indicate that collagens characteristic of cartilage are localized in the organ of Corti. Within the tectorial membrane, types II and IX collagen form heterotypic thick fibers embedded in a reticular network of type V collagen fibers. These collagens form a highly structured matrix which contributes to the rigidity of the tectorial membrane and allow it to withstand the physical stresses associated with transmission of the stimuli necessary for sensory transduction.

摘要

运用免疫细胞化学技术,在光镜和电镜水平下检测成年沙鼠耳蜗柯蒂氏器中II型、IX型和V型胶原蛋白的存在情况。II型胶原蛋白存在于骨螺旋板和螺旋缘的结缔组织中。在感觉毛细胞区域,它存在于盖膜中,抗体与粗大的无分支径向纤维结合。IX型胶原蛋白在盖膜中与II型胶原蛋白共定位,抗体与粗大的无分支径向纤维结合。V型胶原蛋白存在于螺旋缘、骨螺旋板、第八神经和盖膜的结缔组织中。在盖膜中,V型胶原蛋白抗体的染色比II型和IX型胶原蛋白更弥散,V型胶原蛋白抗体与嵌入粗纤维中的细的、高度分支的纤维结合。结果表明,软骨特有的胶原蛋白定位于柯蒂氏器中。在盖膜内,II型和IX型胶原蛋白形成嵌入V型胶原纤维网状结构中的异型粗纤维。这些胶原蛋白形成高度结构化的基质,有助于盖膜的刚性,并使其能够承受与感觉转导所需刺激传递相关的物理应力。

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