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Effects of Spaceflight and Simulated Microgravity on YAP1 Expression in Cardiovascular Progenitors: Implications for Cell-Based Repair

机译:航天和模拟微重力对心血管祖细胞中YAP1表达的影响:对基于细胞的修复的影响。

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摘要

Spaceflight alters many processes of the human body including cardiac function and cardiac progenitor cell behavior. The mechanism behind these changes remains largely unknown; however, simulated microgravity devices are making it easier for researchers to study the effects of microgravity. To study the changes that take place in cardiac progenitor cells in microgravity environments, adult cardiac progenitor cells were cultured aboard the International Space Station (ISS) as well as on a clinostat and examined for changes in Hippo signaling, a pathway known to regulate cardiac development. Cells cultured under microgravity conditions, spaceflight-induced or simulated, displayed upregulation of downstream genes involved in the Hippo pathway such as YAP1 and SOD2. YAP1 is known to play a role in cardiac regeneration which led us to investigate YAP1 expression in a sheep model of cardiovascular repair. Additionally, to mimic the effects of microgravity, drug treatment was used to induce Hippo related genes as well as a regulator of the Hippo pathway, miRNA-302a. These studies provide insight into the changes that occur in space and how the effects of these changes relate to cardiac regeneration studies.
机译:太空飞行会改变人体的许多过程,包括心脏功能和心脏祖细胞行为。这些变化背后的机制仍然未知。然而,模拟微重力装置使研究人员更容易研究微重力的影响。为了研究微重力环境下心脏祖细胞的变化,将成人心脏祖细胞在国际空间站(ISS)上和斜压仪上进行培养,并检查了Hippo信号的变化,该信号是已知的调节心脏发育的途径。在微重力条件下,航天诱导或模拟下培养的细胞显示出参与Hippo途径的下游基因如YAP1和SOD2的上调。已知YAP1在心脏再生中起作用,这使我们研究了在心血管修复的绵羊模型中YAP1的表达。另外,为了模拟微重力的作用,药物处理被用于诱导河马相关基因以及河马途径的调节物miRNA-302a。这些研究提供了对空间中发生的变化以及这些变化的影响如何与心脏再生研究相关的见识。

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