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视网膜色素上皮细胞间质,一个视觉中的空间。

The interphotoreceptor matrix, a space in sight.

作者信息

Mieziewska K

机构信息

Department of Zoology, Göteborg University, Sweden.

出版信息

Microsc Res Tech. 1996 Dec 15;35(6):463-71. doi: 10.1002/(SICI)1097-0029(19961215)35:6<463::AID-JEMT5>3.0.CO;2-J.

Abstract

The interphotoreceptor matrix (IPM) has in recent years been receiving much attention due to its delicate localization between the photoreceptors and the retinal pigment epithelium (RPE). The IPM is a resilient, structure forming and hydrophilic matrix composed of large glycoproteins and proteoglycans, which occupies the subretinal space between the photoreceptors. The IPM is most likely assembled with components synthesized by all the surrounding cell types: the photoreceptor cells, the RPE cells, and the Müller cells. It has been implied to be involved in the development and maintenance of photoreceptors, and as a major factor in retinal adhesion. Therefore, it has been thoroughly studied also in several models of photoreceptor degeneration. Comparative studies have revealed some remarkably consistent features between different species, such as the presence of the rod and cone specific matrix domains. Studies made in the IPM of several species have measured large fluctuations in ion concentrations as a result of changes in illumination. In some species, these ionic fluctuations coincide with the intriguing dynamic redistributions of IPM constituents that can be visualized with histochemical techniques. It can be hypothesized that because of the intensive biochemical activity and the frequent changes in metabolic states of rods and cones the IPM may act as a kind of "buffer." These studies have brought a new extracellular aspect to photoreceptor studies and a new perspective to photoreceptor-RPE research.

摘要

近年来,光感受器间基质(IPM)因其位于光感受器和视网膜色素上皮(RPE)之间的精细定位而备受关注。IPM是一种由大型糖蛋白和蛋白聚糖组成的有弹性、能形成结构且亲水的基质,占据着光感受器之间的视网膜下间隙。IPM很可能是由周围所有细胞类型合成的成分组装而成:光感受器细胞、RPE细胞和米勒细胞。它被认为与光感受器的发育和维持有关,并且是视网膜黏附的一个主要因素。因此,在几种光感受器退化模型中也对其进行了深入研究。比较研究揭示了不同物种之间一些非常一致的特征,比如存在视杆和视锥特异性基质结构域。对几种物种的IPM进行的研究测量了光照变化导致的离子浓度大幅波动。在某些物种中,这些离子波动与IPM成分有趣的动态重新分布相吻合,这些重新分布可用组织化学技术观察到。可以推测,由于视杆和视锥强烈的生化活性以及代谢状态的频繁变化,IPM可能起到一种“缓冲器”的作用。这些研究为光感受器研究带来了一个新的细胞外层面,也为光感受器-RPE研究带来了新的视角。

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