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Morphogenesis of lymphatic vascular networks: Insights from connexin and Foxc2 knockout mice

机译:淋巴管网络的形态发生:连接蛋白和Foxc2基因敲除小鼠的见解

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摘要

To maintain human health, the lymphatic system requires a structurally and functionally sound network of lymph vessels to absorb lipid-based nutrients, preserve extracellular fluid homeostasis, and mediate immune responses. Aside from lymphedema, investigations in the past few decades have found that impairment of the lymphatic vasculature is also involved in processes such as inflammation, tumor metastasis, fat metabolism, and obesity. However, despite a long history of study and rekindled vigor in the field of lymphatic vascular research, our knowledge of lymph vessel development and physiology is still quite limited. Recently, mutations in a protein family known as connexins (Cxs) were identified as the cause of lymphatic dysfunction in some cases of inherited lymphedema. This dissertation explores the role of primarily two specific connexins, Cx37 and Cx43, and the transcription factor Foxc2 in the morphogenesis and function of the lymphatic vasculature in mice. To accomplish this, phenotypic characterization of mice with genetic deficiencies (knockout mice) in Cx37, Cx43, and/or Foxc2 was performed principally via necropsy, histological techniques (immuno-fluorescence microscopy and H&E staining), and Evans blue dye (EBD) injections. Developmental abnormalities were found in lymphatic vascular growth, patterning, and remodeling in mice lacking Cx37, Cx43, Foxc2 or a combined deficiency of these proteins. Reductions or complete loss of lymphatic valves were a common finding in mice lacking one or more of these proteins. These valve deficits underlay lymphatic insufficiencies that resulted in lymphedema and chylothorax in some genotypes. Foxc2 was found to be a regulator of Cx37 expression. Moreover, Foxc2 was also dependent on Cx37 function for proper morphogenesis of lymph vessels. These findings pertaining to the expression of connexins in the lymphatic vasculature, their role in lymphatic valvulogenesis, and the interdependence of Cx37 and Foxc2 during lymph-vascular development represent my original contributions to human knowledge.
机译:为了维持人类健康,淋巴系统需要淋巴血管的结构和功能健全的网络,以吸收基于脂质的营养物质,保持细胞外液的稳态,并介导免疫反应。除了淋巴水肿,过去几十年的研究发现,淋巴管系统的受损也与炎症,肿瘤转移,脂肪代谢和肥胖等过程有关。然而,尽管在淋巴管研究领域有悠久的研究历史并重新焕发了生机,但我们对淋巴管发育和生理学的了解仍然十分有限。最近,在某些遗传性淋巴水肿的病例中,一种被称为连接蛋白(Cxs)的蛋白家族的突变被确定为淋巴功能障碍的原因。本文探讨了两种主要的连接蛋白Cx37和Cx43以及转录因子Foxc2在小鼠淋巴管系统的形态和功能中的作用。为此,主要通过尸检,组织学技术(免疫荧光显微镜和H&E染色)和伊文思蓝染料(EBD)注射对Cx37,Cx43和/或Foxc2中具有遗传缺陷的小鼠(敲除小鼠)进行表型表征。在缺少Cx37,Cx43,Foxc2或这些蛋白的联合缺乏的小鼠中,淋巴管的生长,模式和重塑被发现发育异常。在缺乏一种或多种这些蛋白质的小鼠中,常见的发现是淋巴管减少或完全丧失。这些瓣膜缺陷导致淋巴管功能不全,导致某些基因型的淋巴水肿和乳糜胸。发现Foxc2是Cx37表达的调节因子。此外,Foxc2还依赖于Cx37功能来实现淋巴管的正确形态发生。这些发现与连接蛋白在淋巴管系统中的表达,它们在淋巴血管生成中的作用以及淋巴管发育过程中Cx37和Foxc2的相互依赖性有关,代表了我对人类知识的最初贡献。

著录项

  • 作者

    Kanady, John.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Physiology.;Developmental biology.;Molecular biology.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 187 p.
  • 总页数 187
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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