Altered Functions of Human Blood-Derived Vascular Endothelial Cells by Simulated Microgravity

Vidhya Ramaswamy, A. Goins, J. Allen
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引用次数: 3

Abstract

Abstract Recently, the increase in incidence of cardiovascular degeneration associated with weightlessness has drawn much attention to the detrimental effects of space travel on cardiovascular health. Particularly, the regulatory role of the endothelium in cardiovascular degeneration has been studied extensively. The goal of this study was to understand the effects of simulated microgravity on the proliferative, secretory, and anti-thrombogenic functions of endothelial cells differentiated from human blood-derived progenitor cells. Exposure to simulated microgravity enhanced proliferation, as well as the release of soluble nitric oxide while downregulating the release of pro-inflammatory cytokines, such as interleukin-6 (IL-6). Interestingly, the cells also upregulated gene expression of heat shock protein 70 (hsp70), which may be a potential adaptation mechanism of the cells to altered gravity conditions. However, the secretory and proliferative functions had no effect on the anti-thrombogenic functions of these cells. Their anti-coagulative and anti-thrombogenic abilities, as assessed by both upregulation of tissue plasminogen activator (tPA) and their ability to delay plasma clotting, were impaired on exposure to simulated microgravity. These results collectively provide a useful insight into various mechanisms involved in regulating anti-thrombogenic ability of the endothelium, as well as cardiovascular health in altered gravity conditions.
模拟微重力对人血源性血管内皮细胞功能的影响
近年来,太空旅行对心血管健康的不利影响引起了人们对失重相关心血管变性发病率增加的关注。特别是内皮在心血管变性中的调节作用已被广泛研究。本研究的目的是了解模拟微重力对人血源性祖细胞分化的内皮细胞增殖、分泌和抗血栓形成功能的影响。暴露于模拟微重力环境中会增强细胞增殖,以及可溶性一氧化氮的释放,同时下调促炎细胞因子的释放,如白细胞介素-6 (IL-6)。有趣的是,这些细胞还上调了热休克蛋白70 (hsp70)的基因表达,这可能是细胞对重力条件改变的潜在适应机制。然而,分泌和增殖功能对这些细胞的抗血栓形成功能没有影响。通过组织纤溶酶原激活物(tPA)的上调和延迟血浆凝血的能力来评估,它们的抗凝血和抗血栓形成能力在暴露于模拟微重力环境下受到损害。这些结果共同为在重力改变条件下调节内皮抗血栓形成能力以及心血管健康的各种机制提供了有用的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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