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首页> 外文期刊>The Journal of Membrane Biology >Primary Cultures of Embryonic Chick Lens Cells as a Model System to Study Lens Gap Junctions and Fiber Cell Differentiation
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Primary Cultures of Embryonic Chick Lens Cells as a Model System to Study Lens Gap Junctions and Fiber Cell Differentiation

机译:胚胎小鸡晶状体细胞的原代培养作为研究晶状体间隙连接和纤维细胞分化的模型系统

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摘要

A major limitation in lens gap junction research has been the lack of experimentally tractable ex vivo systems to study the formation and regulation of fiber-type gap junctions. Although immortalized lens-derived cell lines are amenable to both gene transfection and siRNA-mediated knockdown, to our knowledge none are capable of undergoing appreciable epithelial-to-fiber differentiation. Lens central epithelial explants have the converse limitation. A key advance in the field was the development of a primary embryonic chick lens cell culture system by Drs. Sue Menko and Ross Johnson. Unlike central epithelial explants, these cultures also include cells from the peripheral (preequatorial and equatorial) epithelium, which is the most physiologically relevant population for the study of fiber-type gap junction formation. We have modified the Menko/Johnson system and refer to our cultures as dissociated cell-derived monolayer cultures (DCDMLs). We culture DCDMLs without serum to mimic the avascular lens environment and on laminin, the major matrix component of the lens capsule. Here, I review the features of the DCDML system and how we have used it to study lens gap junctions and fiber cell differentiation. Our results demonstrate the power of DCDMLs to generate new findings germane to the mammalian lens and how these cultures can be exploited to conduct experiments that would be impossible, prohibitively expensive and/or difficult to interpret using transgenic animals in vivo.
机译:晶状体间隙连接研究的主要局限性在于缺乏实验上易处理的离体系统来研究纤维型间隙连接的形成和调节。尽管永生的晶状体来源的细胞系既可以进行基因转染,也可以进行siRNA介导的敲除,但据我们所知,没有人能够进行明显的上皮-纤维分化。晶状体中央上皮外植体具有相反的局限性。该领域的关键进展是Drs。开发了一种主要的胚胎鸡晶状体细胞培养系统。苏·曼科(Sue Menko)和罗斯·约翰逊(Ross Johnson)。与中央上皮外植体不同,这些培养物中还包含来自外周(赤道和赤道)上皮的细胞,外周上皮是研究纤维型间隙连接形成最生理相关的种群。我们已经修改了Menko / Johnson系统,并将我们的培养称为离体细胞衍生的单层培养(DCDML)。我们在无血清的情况下培养DCDML,以模拟无血管晶状体环境,并在层粘连蛋白(层状囊的主要基质成分)上进行培养。在这里,我将回顾DCDML系统的功能以及我们如何使用它来研究晶状体间隙连接和纤维细胞分化。我们的结果证明了DCDML产生与哺乳动物晶状体密切相关的新发现的力量,以及如何利用这些培养物进行不可能,昂贵,和/或难以在体内使用转基因动物解释的实验。

著录项

  • 来源
    《The Journal of Membrane Biology》 |2012年第7期|357-368|共12页
  • 作者

    Linda S. Musil;

  • 作者单位

    Department of Biochemistry and Molecular Biology Oregon Health ampamp Science University 3181 Southwest Sam Jackson Park Road Portland OR 97239 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Gap junction; Lens; FGF; Connexin;

    机译:间隙连接;透镜;FGF;连接蛋白;

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