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层粘连蛋白诱导视网膜色素上皮细胞转分化为神经元。

Retinal pigmented epithelial cells induced to transdifferentiate to neurons by laminin.

作者信息

Reh T A, Nagy T, Gretton H

机构信息

Department of Medical Physiology, University of Calgary, Alberta, Canada.

出版信息

Nature. 1987;330(6143):68-71. doi: 10.1038/330068a0.

Abstract

Although the regeneration of nervous tissue in the vertebrate is very limited, there are a few remarkable examples of this process. Understanding the factors that regulate CNS regeneration in those areas of the nervous system where it occurs, will doubtless provide generally applicable, essential information about the process. It has been known for some time that the amphibian retina regenerates following its destruction. Transplant studies, confirmed later by in vitro experiments, have shown that one source of new neurons in regenerating retina is the retinal pigmented epithelium (RPE). RPE cells can transdifferentiate to either neurons or lens cells in culture, but little is known about the factors that regulate this process. A recent study in vivo of retinal regeneration provided evidence that the association of RPE cells with the retinal vascular membrane is an important step in transdifferentiation. We report here that transdifferentiation in vitro is profoundly influenced by the substrate on which the cells are cultured; RPE cells plated on laminin-containing substrates frequently transdifferentiate into neurons. In addition, we have found a high concentration of laminin in the Rana retinal vascular membrane. Therefore, we propose that retinal regeneration is initiated by changes in the composition of the extracellular matrix that RPE cells contact early in the process.

摘要

尽管脊椎动物神经组织的再生非常有限,但仍有一些该过程的显著例子。了解在神经系统中发生再生的那些区域调节中枢神经系统再生的因素,无疑将提供有关该过程普遍适用的重要信息。一段时间以来,人们已知两栖动物的视网膜在被破坏后会再生。移植研究后来得到体外实验的证实,表明再生视网膜中新神经元的一个来源是视网膜色素上皮(RPE)。RPE细胞在培养中可以转分化为神经元或晶状体细胞,但对于调节这一过程的因素知之甚少。最近一项关于视网膜再生的体内研究提供了证据,表明RPE细胞与视网膜血管膜的关联是转分化中的一个重要步骤。我们在此报告,体外转分化受到细胞所培养底物的深刻影响;接种在含层粘连蛋白底物上的RPE细胞经常转分化为神经元。此外,我们在蛙视网膜血管膜中发现了高浓度的层粘连蛋白。因此,我们提出视网膜再生是由RPE细胞在该过程早期接触的细胞外基质组成的变化引发的。

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