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Retinal ganglion cell differentiation in cultured mouse retinal explants.

机译:培养的小鼠视网膜外植体中的视网膜神经节细胞分化。

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摘要

The availability of genetically engineered mice harboring specific mutations in genes affecting one or more retinal cell types affords new opportunities for investigating the genetic regulatory mechanisms of vertebrate retina formation. When identifying critical regulatory genes involved in retina development it is often advantageous to complement in vivo analysis with in vitro characterization. In particular, by combining classical techniques of retinal explant culturing with gene transfer procedures relying on herpes simple virus (HSV) amplicon vectors, gain-of-function analysis with genes of interest can be performed quickly and efficiently. Here, details are provided for isolating and culturing explants containing retinal progenitor cells and for infecting the explants with HSV expression vectors that perturb or rescue retinal ganglion cells, the first cell type to differentiate in the retina. In addition, the availability of sensitive techniques to monitor gene expression, including detection of reporter gene expression using antibodies and detection of endogenous marker gene expression using quantitative RT-PCR, provides an effective means for comparing wild-type and mutant retinas from genetically engineered mice.
机译:具有影响一种或多种视网膜细胞类型的基因中特定突变的基因工程小鼠的可用性为研究脊椎动物视网膜形成的遗传调控机制提供了新的机会。当鉴定参与视网膜发育的关键调节基因时,通常有利的是用体外表征补充体内分析。特别是,通过将经典的视网膜外植体培养技术与依靠单纯疱疹病毒(HSV)扩增子载体的基因转移程序相结合,可以快速而有效地进行目标基因的功能获得分析。在这里,提供了用于分离和培养含有视网膜祖细胞的外植体以及用干扰或拯救视网膜神经节细胞的HSV表达载体感染外植体的细节,这是在视网膜中分化的第一种细胞。此外,监测基因表达的敏感技术的可用性,包括使用抗体检测报告基因表达和使用定量RT-PCR检测内源性标记基因表达,为比较转基因小鼠的野生型和突变型视网膜提供了有效的手段。

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