Craig Sonya E L, Calinescu Anda-Alexandra, Hitchcock Peter F
J Ocul Biol Dis Infor. 2008 Dec;1(2-4):73-84. doi: 10.1007/s12177-008-9011-5. Epub 2008 Nov 18.
Investigating neuronal and photoreceptor regeneration in the retina of zebra fish has begun to yield insights into both the cellular and molecular means by which this lower vertebrate is able to repair its central nervous system. However, knowledge about the signaling molecules in the local microenvironment of a retinal injury and the transcriptional events they activate during neuronal death and regeneration is still lacking. To identify genes involved in photoreceptor regeneration, we combined light-induced photoreceptor lesions, laser-capture microdissection of the outer nuclear layer (ONL) and analysis of gene expression to characterize transcriptional changes for cells in the ONL as photoreceptors die and are regenerated. Using this approach, we were able to characterize aspects of the molecular signature of injured and dying photoreceptors, cone photoreceptor progenitors, and microglia within the ONL. We validated changes in gene expression and characterized the cellular expression for three novel, extracellular signaling molecules that we hypothesize are involved in regulating regenerative events in the retina.
The online version of this article (doi:10.1007/s12177-008-9011-5) contains supplementary material, which is available to authorized users.
对斑马鱼视网膜中神经元和光感受器再生的研究已开始揭示这种低等脊椎动物修复其中枢神经系统的细胞和分子机制。然而,关于视网膜损伤局部微环境中的信号分子以及它们在神经元死亡和再生过程中激活的转录事件的知识仍然匮乏。为了鉴定参与光感受器再生的基因,我们结合了光诱导的光感受器损伤、外核层(ONL)的激光捕获显微切割以及基因表达分析,以表征随着光感受器死亡和再生,ONL中细胞的转录变化。使用这种方法,我们能够描述ONL中受损和濒死的光感受器、视锥光感受器祖细胞以及小胶质细胞的分子特征。我们验证了基因表达的变化,并表征了三种新型细胞外信号分子的细胞表达,我们推测这些分子参与调节视网膜中的再生事件。
本文的在线版本(doi:10.1007/s12177-008-9011-5)包含补充材料,授权用户可获取。