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研究流体剪切应力对淋巴管内皮细胞的影响。

Investigating Effects of Fluid Shear Stress on Lymphatic Endothelial Cells.

作者信息

Sweet Daniel T, Hall Joshua D, Welsh John, Kahn Mark L, Jiménez Juan M

机构信息

GlaxoSmithKline, Target Incubator, Exploratory Discovery, Collegeville, PA, USA.

Department of Mechanical and Industrial Engineering, University of Massachusetts, Amherst, MA, USA.

出版信息

Methods Mol Biol. 2018;1846:213-227. doi: 10.1007/978-1-4939-8712-2_14.

Abstract

Recent studies using in vivo models have characterized lymph flow and demonstrated that lymph flow plays a key role in the later stages of lymphatic vascular development, including vascular remodeling, to create a hierarchical collecting vessel network and lymphatic valves (Sweet et al., J Clin Invest 125, 2995-3007, 2015). However, mechanistic insights into the response of lymphatic endothelial cells to fluid flow are difficult to obtain from in vivo studies because of the small size of lymphatic vessels and the technical challenge of lymphatic endothelial cell isolation. On the other hand, in vitro experiments can be tailored to isolate and test specific mechanotransduction pathways more cleanly than conditions in vivo. To measure in vitro the cellular response to flow, cultured primary lymphatic endothelial cells can be exposed to highly specific fluid forces like those believed to exist in vivo. Such in vitro studies have recently helped identify FOXC2 and GATA2 as important transcriptional regulators of lymphatic function during valve formation that are regulated by lymph flow dynamics. This chapter discusses the methods used to expose primary lymphatic endothelial cells (LECs) to lymph fluid dynamics and the relationship of these in vitro studies to in vivo lymphatic biology.

摘要

最近使用体内模型的研究已经对淋巴流动进行了表征,并证明淋巴流动在淋巴管发育的后期阶段发挥关键作用,包括血管重塑,以形成分级收集血管网络和淋巴管瓣膜(Sweet等人,《临床研究杂志》125卷,2995 - 3007页,2015年)。然而,由于淋巴管尺寸小以及淋巴管内皮细胞分离的技术挑战,从体内研究中很难获得关于淋巴管内皮细胞对流体流动反应的机制性见解。另一方面,体外实验可以进行调整,以便比体内条件更清晰地分离和测试特定的机械转导途径。为了在体外测量细胞对流动的反应,可以将培养的原代淋巴管内皮细胞暴露于被认为在体内存在的高度特异性流体力中。最近,此类体外研究有助于确定FOXC2和GATA2是瓣膜形成过程中淋巴功能的重要转录调节因子,它们受淋巴流动动力学调控。本章讨论了将原代淋巴管内皮细胞(LECs)暴露于淋巴液动力学的方法,以及这些体外研究与体内淋巴生物学的关系。

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