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移植到受损视网膜后引导光感受器细胞迁移的预测分子信号传导。

Predicted molecular signaling guiding photoreceptor cell migration following transplantation into damaged retina.

作者信息

Unachukwu Uchenna John, Warren Alice, Li Ze, Mishra Shawn, Zhou Jing, Sauane Moira, Lim Hyungsik, Vazquez Maribel, Redenti Stephen

机构信息

Biochemistry Doctoral Program, The Graduate School, City University of New York, New York, NY, USA.

Department of Biological Sciences, Lehman College, City University of New York, Bronx, NY, USA.

出版信息

Sci Rep. 2016 Mar 3;6:22392. doi: 10.1038/srep22392.

Abstract

To replace photoreceptors lost to disease or trauma and restore vision, laboratories around the world are investigating photoreceptor replacement strategies using subretinal transplantation of photoreceptor precursor cells (PPCs) and retinal progenitor cells (RPCs). Significant obstacles to advancement of photoreceptor cell-replacement include low migration rates of transplanted cells into host retina and an absence of data describing chemotactic signaling guiding migration of transplanted cells in the damaged retinal microenvironment. To elucidate chemotactic signaling guiding transplanted cell migration, bioinformatics modeling of PPC transplantation into light-damaged retina was performed. The bioinformatics modeling analyzed whole-genome expression data and matched PPC chemotactic cell-surface receptors to cognate ligands expressed in the light-damaged retinal microenvironment. A library of significantly predicted chemotactic ligand-receptor pairs, as well as downstream signaling networks was generated. PPC and RPC migration in microfluidic ligand gradients were analyzed using a highly predicted ligand-receptor pair, SDF-1α - CXCR4, and both PPCs and RPCs exhibited significant chemotaxis. This work present a systems level model and begins to elucidate molecular mechanisms involved in PPC and RPC migration within the damaged retinal microenvironment.

摘要

为了替代因疾病或创伤而丧失的光感受器并恢复视力,世界各地的实验室正在研究使用光感受器前体细胞(PPCs)和视网膜祖细胞(RPCs)的视网膜下移植来进行光感受器替代的策略。光感受器细胞替代研究进展的重大障碍包括移植细胞向宿主视网膜的低迁移率,以及缺乏描述在受损视网膜微环境中引导移植细胞迁移的趋化信号的数据。为了阐明引导移植细胞迁移的趋化信号,对光损伤视网膜进行了PPC移植的生物信息学建模。该生物信息学建模分析了全基因组表达数据,并将PPC趋化性细胞表面受体与光损伤视网膜微环境中表达的同源配体进行匹配。生成了一个显著预测的趋化配体-受体对以及下游信号网络的文库。使用一个高度预测的配体-受体对SDF-1α - CXCR4分析了微流控配体梯度中的PPC和RPC迁移,PPC和RPC均表现出显著的趋化性。这项工作提出了一个系统水平的模型,并开始阐明受损视网膜微环境中PPC和RPC迁移所涉及的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2e1/4776098/22ad021524e1/srep22392-f1.jpg

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