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论肺内皮细胞的异质性。

On lung endothelial cell heterogeneity.

作者信息

Gebb Sarah, Stevens Troy

机构信息

Department of Medicine, University of Colorado Health Sciences Center, Denver, CO 80262, USA.

出版信息

Microvasc Res. 2004 Jul;68(1):1-12. doi: 10.1016/j.mvr.2004.02.002.

Abstract

Heterogeneity in endothelial cell structure and function among vascular beds has been recognized for decades. However, recent findings have resolved that endothelial cells possess a functional memory based upon where they are in a blood vessel or based upon where they are isolated from within the blood vessel. Functional memory has been identified using integrated in vivo and in vitro bioassays and, most recently, through molecular profiling experiments. Memory is attributed to the epigenetic modification of phenotype that occurs in response to site-specific, cell-environment interaction during vascular development. In the embryo, Notch signal transduction is required for proper large blood vessel formation and function, whereas vascular endothelial cell growth factor (VEGF) is required for many of the processes of early vascular development including vasculogenesis and large vessel formation. Both Notch and VEGF are expressed in the developing lung, and their roles in pulmonary vascular development likely parallel those in the systemic circulation. Thus, integrated molecular profiling and transgenic technology provide new tools to investigate the interplay between epigenetic and environmental modulation of cell phenotype that controls endothelial cell behavior, and will aid in our understanding of the molecular signals required for normal and abnormal lung vascular development and function.

摘要

数十年来,人们已经认识到血管床之间内皮细胞结构和功能的异质性。然而,最近的研究结果表明,内皮细胞具有基于其在血管中的位置或基于从血管内分离的位置的功能记忆。功能记忆已通过体内和体外综合生物测定法以及最近的分子谱实验得以确定。记忆归因于表型的表观遗传修饰,这种修饰发生在血管发育过程中对特定部位的细胞-环境相互作用的响应中。在胚胎中,Notch信号转导是正常大血管形成和功能所必需的,而血管内皮细胞生长因子(VEGF)是早期血管发育的许多过程所必需的,包括血管生成和大血管形成。Notch和VEGF在发育中的肺中均有表达,它们在肺血管发育中的作用可能与在体循环中的作用相似。因此,综合分子谱分析和转基因技术为研究控制内皮细胞行为的细胞表型的表观遗传和环境调节之间的相互作用提供了新工具,并将有助于我们理解正常和异常肺血管发育及功能所需的分子信号。

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