胰岛素抵抗中内皮素活性增强可阻止血管对胰岛素的舒张

A. W. Miller, C. Tulbert, M. Puskar, D. Busija
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引用次数: 74

摘要

虽然胰岛素介导的血管舒张在胰岛素抵抗中受损,但其机制尚不清楚。我们研究了胰岛素抵抗大鼠和对照大鼠对胰岛素的血管活性反应的介导因素。在阻断内皮素- a受体、环氧化酶、一氧化氮合酶和钾通道后,研究了对照组和胰岛素抵抗大鼠肠系膜小动脉对胰岛素的反应。此外,胰岛素对肠系膜小血管生成前列环素的影响通过酶免疫分析法进行了评估。胰岛素诱导对照动脉出现浓度依赖性血管舒张,而胰岛素抵抗大鼠的动脉不存在这种情况。然而,当内皮素a受体拮抗剂BQ610存在时,胰岛素抵抗动脉对胰岛素的反应正常化。在对照动脉中,胰岛素诱导的血管舒张被吲哚美辛、甲氯芬酯、格列苯脲或氯化钾完全抑制。相比之下,n-硝基-l-精氨酸和白藜芦醇毒素和维生素a的组合都没有改变胰岛素的血管舒张。在BQ610存在的胰岛素抵抗动脉中,吲哚美辛、格列本脲和氯化钾也能抑制血管舒张。胰岛素增加了两组大鼠肠系膜小血管中前列环素的产生,其程度相似。胰岛素诱导的大鼠肠系膜动脉血管舒张是通过前列环素和atp依赖的钾通道介导的。然而,除非内皮素- a受体被阻断,否则胰岛素抵抗动脉不会对胰岛素进行血管扩张。因此,胰岛素抵抗大鼠对胰岛素的松弛受损是由于内皮素增强血管收缩,这抵消了对胰岛素的正常血管舒张反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced Endothelin Activity Prevents Vasodilation to Insulin in Insulin Resistance
Although insulin-mediated vasodilation is impaired in insulin resistance, the mechanisms of this are unknown. We investigated factors mediating vasoactive responses to insulin in control and insulin-resistant rats. Responses to insulin in small mesenteric arteries from control and insulin-resistant rats were investigated after blocking endothelin-A receptors, cyclooxygenase, nitric oxide synthase, and potassium channels. In addition, insulin’s effect on prostacyclin production in small mesenteric blood vessels was assessed by enzyme immunoassay. Insulin induced a concentration-dependent vasodilation in control arteries that was absent in arteries from insulin-resistant rats. However, in the presence of BQ610, an endothelin-A receptor antagonist, the response to insulin was normalized in insulin-resistant arteries. In control arteries, insulin-induced vasodilation was completely inhibited by indomethacin, meclofenamate, glibenclamide, or potassium chloride. In contrast, neither n-nitro-l-arginine nor the combination of charybdotoxin and apamin altered vasodilation to insulin. In insulin-resistant arteries in the presence of BQ610, vasodilation was also inhibited by indomethacin, glibenclamide, and potassium chloride. Insulin increased prostacyclin production in small mesenteric blood vessels from both groups of rats to a similar degree. Insulin-induced vasodilation in small rat mesenteric arteries is mediated through prostacyclin- and ATP-dependent potassium channels. However, insulin-resistant arteries do not vasodilate to insulin unless endothelin-A receptors are blocked. Thus, impaired relaxation to insulin in insulin-resistant rats is due to enhanced vasoconstriction by endothelin, which offsets a normal vasodilatory response to insulin.
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