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CHANGES OF ANG1OTENSINOGEN EXPRESSION IN ARTERIES OF TAIL-SUSPENDED RATS

机译:尾部悬吊大鼠动脉血管紧张素原表达的变化

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摘要

Previous findings from our laboratory have demonstrated that simulated microgravity may result in atrophic changes with depressed vasoconstrictor responsiveness in hindquarter vessels, and hypertrophic changes with enhanced vasoconstrictor responsiveness in cerebral arteries of rats. However, the mechanisms of this differential adaptation are still not well understood. Local renin-angiotensin system (L-RAS) has been found to be actively involved in the remodeling of arteries. We hypothesized that L-RAS may function as a local regulatory mechanism in the microgravity-induced differential changes of arterial vessles. Angiotensinogen (AGT) is the only and indispensable substrate of local renin-angiotensin system (L-RAS). In the present-work, the expression changes of AGT mRNA and protein level as well as its time course characteristics were examined.
机译:我们实验室以前的发现表明,模拟的微重力可能导致后肢血管收缩反应性降低而引起萎缩性变化,而大鼠脑动脉血管收缩性反应性增强时则发生肥大性改变。然而,这种差异适应的机制仍未得到很好的理解。已经发现局部肾素-血管紧张素系统(L-RAS)积极参与了动脉的重塑。我们假设L-RAS可能在微重力诱导的动脉微血管变化中起局部调节作用。血管紧张素原(AGT)是局部肾素-血管紧张素系统(L-RAS)的唯一且不可缺少的底物。在本工作中,检查了AGT mRNA和蛋白水平的表达变化及其时程特征。

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