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Metabolic and vascular actions of endothelin-1 are inhibited by insulin-mediated vasodilation in perfused rat hindlimb muscle

机译:胰岛素介导的血管扩张作用在灌注的大鼠后肢肌肉中抑制内皮素-1的代谢和血管作用

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class="enumerated" style="list-style-type:decimal">Endothelin-1 (ET-1) is a potent endothelium-derived vasoactive peptide and may be involved in the microvascular actions of insulin for the normal delivery of nutrients to muscle, although higher levels may be antagonistic.Our aim was to observe the interaction between ET-1 and insulin. Initially, we attempted to distinguish the vascular from the metabolic effects of ET-1 in the constant-flow pump-perfused rat hindlimb by using various doses of ET-1 and measuring changes in perfusion pressure (PP), oxygen consumption (VO2), glucose uptake (GU) and lactate release (LR). Sodium nitroprusside (SNP) was used to block vasoconstriction and to thus assess the relationship between vascular and metabolic effects. Insulin was included in later experiments to determine the interaction between insulin and ET-1 on the above parameters.ET-1 caused a dose-dependent increase in PP. Effects on VO2 were biphasic, with low doses increasing VO2, and higher doses leading to a net inhibition. GU and LR were increased at lower doses (ET-1 ⩽1 nM), but this effect was lost at higher doses (⩾10 nM ET-1).SNP (50 μM) fully blocked the increase in pressure and metabolism due to low-dose ET-1 and partly blocked both pressure and metabolic responses by the high dose. ET-1 vasodilatory activity was minimal at high or low dose. Insulin (15 nM) alone caused GU, which was not affected by ET-1. Of the other parameters measured, insulin behaved essentially the same as SNP, inhibiting the pressure and oxygen effects.Overall, these results show that ET-1 has a biphasic dose-dependent vasoconstrictor effect on hindlimb blood vessels, able to modulate flow to cause both the stimulation and inhibition of metabolism, although these effects are blocked by insulin, which is able to vasodilate against both low and high doses of ET-1.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 内皮素-1(ET-1)是一种有效的内皮源性血管活性肽,尽管较高的水平可能具有拮抗作用,但可能参与胰岛素的微血管作用,以正常地向肌肉输送营养。 目的是观察ET-1与胰岛素之间的相互作用。最初,我们试图通过使用各种剂量的ET-1并测量灌注压力(PP),耗氧量(VO2)的变化来区分恒流泵灌注大鼠后肢中ET-1的血管代谢与代谢作用。葡萄糖摄取(GU)和乳酸释放(LR)。硝普钠(SNP)用于阻断血管收缩,从而评估血管与代谢作用之间的关系。在以后的实验中将胰岛素包括在内,以测定胰岛素和ET-1在上述参数上的相互作用。 ET-1引起PP的剂量依赖性增加。对VO2的影响是双相的,低剂量增加VO2,高剂量导致净抑制。在较低剂量(ET-1⩽1nM)下,GU和LR升高,而在较高剂量(⩾10nM ET-1)下,这种作用消失。 SNP(50μM)完全阻止了这种增加。低剂量的ET-1引起压力和代谢异常,高剂量部分阻止压力和代谢反应。高剂量或低剂量时ET-1血管舒张活性极小。单独的胰岛素(15 nM)引起GU,而不受ET-1的影响。在其他测量参数中,胰岛素的行为与SNP基本相同,从而抑制了压力和氧​​气作用。 总体而言,这些结果表明ET-1对后肢血管具有双相剂量依赖性血管收缩作用,能够调节血流,从而引起代谢的刺激和抑制,尽管这些作用被胰岛素阻止,胰岛素能够针对低剂量和高剂量的ET-1进行血管舒张。

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