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S334ter-line3 转基因大鼠视网膜神经元的形态改变。

Morphological alterations in retinal neurons in the S334ter-line3 transgenic rat.

机构信息

Department of Biomedical Engineering and Center for Vision Science and Technology, University of Southern California, Los Angeles, 90089-1111, USA.

出版信息

Cell Tissue Res. 2010 Mar;339(3):481-91. doi: 10.1007/s00441-009-0916-5. Epub 2010 Feb 2.

Abstract

The S334ter-line-3 rat is a transgenic model of retinal degeneration developed to express a rhodopsin mutation similar to that found in human retinitis pigmentosa (RP) patients. Previous studies have focused on physiological changes in retinal cells and higher centers of the visual system with this model of retinal degeneration. However, little is known about the morphological changes in retinal cells during the development of the S334ter-line-3 rat. In order to understand and aid vision-rescue strategies, our aim has been to describe the retinal degeneration pattern in this model. We focus on changes in the morphologies of horizontal, bipolar, and amacrine cells in developing S334ter-line-3 rat retinas. Degeneration of photoreceptors begins in the central retina and progresses toward the periphery. In retinas at post-natal day 15 (P15), horizontal and rod bipolar cells show normal morphology. However, at P21, horizontal and rod bipolar cells exhibit abnormal processes at the outer plexiform layer, whereas the outer nuclear layer is significantly thinner. A glial reaction occurs concomitantly. In contrast, modifications in cone-bipolar and amacrine cells are much slower and do not occur until P90 and P180, respectively. The density of horizontal and rod-bipolar cells significantly drops after P60. Overall, the S334ter-line-3 model exhibits the hallmarks of cellular remodeling caused by photoreceptor degeneration. Its moderately fast time course makes the S334ter-line-3 a good model for studying vision-rescue strategies.

摘要

S334ter-line-3 大鼠是一种视网膜变性的转基因模型,用于表达类似于人类色素性视网膜炎(RP)患者的视蛋白突变。以前的研究主要集中在视网膜细胞和视觉系统的较高中心的生理变化上,使用这种视网膜变性模型。然而,对于 S334ter-line-3 大鼠中视网膜细胞的形态变化知之甚少。为了了解和帮助视力恢复策略,我们的目标是描述该模型中的视网膜变性模式。我们专注于研究 S334ter-line-3 大鼠发育中的视网膜中水平细胞、双极细胞和无长突细胞的形态变化。光感受器的变性首先从中央视网膜开始,并向周边发展。在出生后 15 天(P15)的视网膜中,水平细胞和杆状双极细胞显示正常形态。然而,在 P21 时,水平细胞和杆状双极细胞在外丛状层显示出异常的过程,而外核层明显变薄。同时发生了胶质反应。相比之下,锥状双极细胞和无长突细胞的改变要慢得多,分别要到 P90 和 P180 才会发生。在 P60 之后,水平细胞和杆状双极细胞的密度显著下降。总体而言,S334ter-line-3 模型表现出由光感受器变性引起的细胞重塑的特征。其适中的时间过程使 S334ter-line-3 成为研究视力恢复策略的良好模型。

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