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首页> 外文期刊>The Journal of Physiology >Differential inhibition by hyperglycaemia of shear stress- but not acetylcholine-mediated dilatation in the iliac artery of the anaesthetized pig
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Differential inhibition by hyperglycaemia of shear stress- but not acetylcholine-mediated dilatation in the iliac artery of the anaesthetized pig

机译:高血糖对麻醉猪the动脉剪切应力而非乙酰胆碱介导的扩张的差异抑制

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摘要

Clinical hyperglycaemia affects vascular endothelial function, but the effect on shear stress-induced arterial dilatation has not yet been established. We hypothesized that hyperglycaemia would inhibit this response via impaired glycocalyx mechanotransduction. Experiments were carried out in the anaesthetized pig in which pressure, blood flow and diameter of the left iliac artery were measured at two sites: proximal {dl) and distal (d2). Infusion of glucose, sufficient to raise blood glucose to 16-30 mM along the whole length of the artery, attenuated the shear stress-dependent dilatation in both sections of the artery with preservation of the responses to acetylcholine. The distal site was then isolated using snares and the lumen exposed to blood containing 25-35 mM glucose for 20 min. In the control situation, after exposure of both sections to normoglycaemia (5.7 mM glucose), both sections of artery showed increases in diameter in response to shear stress and acetylcholine. Hyperglycaemia attenuated the shear stress-dependent dilatation in the distal section only (P < 0.25), but not the response to acetylcholine. It is concluded from these results that the hyperglycaemia-impaired dilatation is consistent with loss of mechanotransducing properties of the endothelial glycocalyx by hyperglycaemia. These findings offer a possible explanation for the increased incidence of vascular disease in diabetic patients.
机译:临床上的高血糖会影响血管内皮功能,但对剪切应力引起的动脉扩张的影响尚未确定。我们假设高血糖症会通过糖萼机械传导受损而抑制这种反应。在麻醉的猪中进行实验,其中在两个部位:近端(d1)和远端(d2)测量了骨的压力,血流量和直径。输注葡萄糖足以使整个动脉长度的血糖升高至16-30 mM,从而减弱了动脉两部分的切应力依赖性扩张,并保留了对乙酰胆碱的反应。然后使用圈套器分离远端部位,并将内腔暴露于含25-35 mM葡萄糖的血液中20分钟。在对照情况下,两部分均暴露于常血糖(5.7 mM葡萄糖)后,动脉两部分均显示出响应切应力和乙酰胆碱的直径增加。高血糖仅减弱远端部分的切应力依赖性扩张(P <0.25),而不减弱对乙酰胆碱的反应。从这些结果可以得出结论,高血糖受损的扩张与高血糖导致的内皮糖萼的机械传递特性的丧失相一致。这些发现为糖尿病患者血管疾病增加的发病率提供了可能的解释。

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