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首页> 外文期刊>American Journal of Physiology >Insulin inhibits vascular smooth muscle contraction at a site distal to intracellular Ca2+ concentration.
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Insulin inhibits vascular smooth muscle contraction at a site distal to intracellular Ca2+ concentration.

机译:胰岛素抑制细胞内Ca2 +浓度远端的血管平滑肌收缩。

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Several hypertensive states are associated with resistance to insulin-induced glucose disposal and insulin-induced vasodilation. Insulin can inhibit vascular smooth muscle (VSM) contraction at the level of the VSM cell, and resistance to insulin's inhibition of VSM cell contraction may be of pathophysiological importance. To understand the VSM cellular mechanisms by which insulin resistance leads to increased VSM contraction, we sought to determine how insulin inhibits contraction of normal VSM. It has been shown that insulin lowers the contractile agonist-stimulated intracellular Ca2+ (Ca2+i) transient in VSM cells. In this study, our goal was to see whether insulin inhibits VSM cell contraction at steps distal to Ca2+i and, if so, to determine whether the mechanism is dependent on nitric oxide synthase (NOS) and cGMP. Primary cultured VSM cells from canine femoral artery were bathed in a physiological concentration of extracellular Ca2+ and permeabilized to Ca2+ with a Ca2+ ionophore, either ionomycin or A-23187. The resultant increase in Ca2+i contracted individual cells, as measured by photomicroscopy. Preincubating cells with 1 nM insulin for 30 min did not affect basal Ca2+i or the ionomycin-induced increase in Ca2+i, as determined by fura 2 fluorescence measurements, but it did inhibit ionomycin- and A-23187-induced contractions by 47 and 51%, respectively (both P < 0.05). In the presence of 1.0 microM ionized Ca2+, ionomycin-induced contractions were inhibited by insulin in a dose-dependent manner. In the presence of ionomycin, insulin increased cGMP production by 43% (P < 0.05). 1H-[1,2,4]oxadiazolo[4,3-a]quinoxalin-1-one (10 microM), a selective inhibitor of guanylate cyclase that blocked cGMP production in these cells, completely blocked the inhibition by insulin of ionomycin-induced contraction. It was found that the cells expressed the inducible isoform of NOS. NG-monomethyl-L-arginine or NG-nitro-L-arginine methyl ester (0.1 mM), inhibitors of NOS, did not affect ionomycin-induced contraction but prevented insulin from inhibiting contraction. We conclude that insulin stimulates cGMP production and inhibits VSM contraction in the presence of elevated Ca2+i. This inhibition by insulin of VSM contraction at sites where Ca2+i could not be rate limiting is dependent on NOS and cGMP.
机译:几种高血压状态与对胰岛素诱导的葡萄糖处置和胰岛素诱导的血管舒张的抵抗有关。胰岛素可以在VSM细胞水平上抑制血管平滑肌(VSM)收缩,而抵抗胰岛素对VSM细胞收缩的抑制作用可能具有重要的病理生理意义。为了了解胰岛素抵抗导致VSM收缩增加的VSM细胞机制,我们试图确定胰岛素如何抑制正常VSM的收缩。已经显示出胰岛素降低了VSM细胞中由激动剂刺激的收缩性细胞内Ca 2+(Ca 2+ i)瞬变。在这项研究中,我们的目标是观察胰岛素是否抑制Ca2 + i远端的VSM细胞收缩,如果是,则确定其机制是否依赖于一氧化氮合酶(NOS)和cGMP。将来自犬股动脉的原代培养的VSM细胞浸入生理浓度的细胞外Ca2 +中,并用Ca2 +离子载体(离子霉素或A-23187)透化为Ca2 +。通过显微镜观察,Ca2 + i收缩后单个细胞的增加。如呋喃2荧光测量所确定的,将细胞与1 nM胰岛素预孵育30分钟不会影响基础Ca2 + i或离子霉素诱导的Ca2 + i增加,但是它确实抑制了离子霉素和A-23187诱导的收缩47和51%(均P <0.05)。在存在1.0 microM离子化的Ca2 +的情况下,胰岛素可抑制离子霉素诱导的收缩,并呈剂量依赖性。在存在离子霉素的情况下,胰岛素使cGMP产生增加了43%(P <0.05)。 1H- [1,2,4] oxadiazolo [4,3-a] quinoxalin-1-one(10 microM)是鸟苷酸环化酶的选择性抑制剂,可阻断这些细胞中cGMP的产生,从而完全阻断胰岛素对离子霉素-的抑制作用。诱发收缩。发现细胞表达了可诱导的NOS同工型。 NOS抑制剂NG-单甲基-L-精氨酸或NG-硝基-L-精氨酸甲酯(0.1 mM)不影响离子霉素诱导的收缩,但阻止胰岛素抑制收缩。我们得出的结论是,胰岛素在升高的Ca2 + i存在下会刺激cGMP的产生并抑制VSM收缩。在Ca2 + i不能限制速率的部位,胰岛素对VSM收缩的抑制作用取决于NOS和cGMP。

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