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模拟微重力增强大鼠基底动脉的血管收缩反应性。

Simulated microgravity enhances vasoconstrictor responsiveness of rat basilar artery.

作者信息

Zhang L N, Zhang L F, Ma J

机构信息

Department of Aerospace Physiology, The Fourth Military Medical University, Xi'an 710032, China.

出版信息

J Appl Physiol (1985). 2001 Jun;90(6):2296-305. doi: 10.1152/jappl.2001.90.6.2296.

Abstract

Recently, hypertrophy and increased myogenic tone of brain vessels have been observed in rats after simulated microgravity. It is expected that simulated microgravity may also induce hyperreactivity of brain vessels. To test this hypothesis, Sprague-Dawley rats were subjected to a 4-wk tail-suspended hindlimb unloading (TS) to simulate the cardiovascular deconditioning effect of microgravity. After 4 wk, the vasoreactivity of isolated basilar arterial rings from TS rats to both receptor- and non-receptor-mediated vasoconstrictors, such as KCl, arginine vasopressin, or 5-hydroxytryptamine (5-HT), and vasodilators such as ACh, thrombin, adenosine, or sodium nitroprusside were examined and compared with those from simultaneous control (Cn) rats. In the first part of this study, it was found that the maximal isometric contractile responsiveness evoked by vasoconstrictors such as KCl, arginine vasopressin, or 5-HT was enhanced in basilar arterial rings from TS rats, whereas vasodilatory responsiveness to vasodilators showed no significant difference between TS and Cn rats. In the second part of this study, it was found that removal of the endothelium had no effects on the contractile responsiveness to 5-HT in basilar arterial rings from TS rats but enhanced markedly the responsiveness in basilar arterial rings from Cn rats to an extent comparable with that of TS rats. Application of tetraethylammonium also had no effects on the contractile response to 5-HT in basilar arterial rings from TS but significantly increased the responsiveness of basilar arterial rings from Cn rats with endothelium intact. These results showed that 4-wk simulated microgravity enhanced the vascular contractile responsiveness of basilar arterial rings to both receptor- and non-receptor-mediated vasoconstrictors, and the enhancement of 5-HT-induced contraction in TS rat basilar arteries was due to an impairment of endothelium-dependent mechanism. These results suggest that endothelium-derived hyperpolarizing factors are responsible for this endothelium-dependent attenuating modulatory mechanism in contractile responsiveness of rat basilar arteries to 5-HT.

摘要

最近,在模拟微重力环境下的大鼠中观察到脑血管肥大及肌源性张力增加。预计模拟微重力也可能诱发脑血管反应性亢进。为验证这一假说,将Sprague-Dawley大鼠进行4周的尾部悬吊后肢卸载(TS),以模拟微重力对心血管系统的去适应作用。4周后,检测并比较了TS大鼠离体基底动脉环对受体介导和非受体介导的血管收缩剂(如氯化钾、精氨酸加压素或5-羟色胺(5-HT))以及血管舒张剂(如乙酰胆碱、凝血酶、腺苷或硝普钠)的血管反应性,并与同期对照(Cn)大鼠进行对比。在本研究的第一部分中,发现TS大鼠基底动脉环对氯化钾、精氨酸加压素或5-HT等血管收缩剂诱发的最大等长收缩反应性增强,而TS大鼠与Cn大鼠对血管舒张剂的舒张反应性无显著差异。在本研究的第二部分中发现,去除内皮对TS大鼠基底动脉环对5-HT的收缩反应性无影响,但显著增强了Cn大鼠基底动脉环的反应性,增强程度与TS大鼠相当。应用四乙铵对TS大鼠基底动脉环对5-HT的收缩反应也无影响,但显著增加了内皮完整的Cn大鼠基底动脉环的反应性。这些结果表明,4周的模拟微重力增强了基底动脉环对受体介导和非受体介导的血管收缩剂的血管收缩反应性,TS大鼠基底动脉中5-HT诱导的收缩增强是由于内皮依赖性机制受损所致。这些结果提示,内皮衍生的超极化因子是大鼠基底动脉对5-HT收缩反应性中这种内皮依赖性衰减调节机制的原因。

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