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Influence of bradykinin upon insulin-insulin receptor interaction in muscular tissue of a rat in vivo, in normo-and hypothermia

机译:常温和低温下缓激肽对大鼠肌肉组织中胰岛素-胰岛素受体相互作用的影响

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The aim of this study was the influence of bradykinin on insulin-insulin receptor interaction in the rats muscle tissue under normal conditions or in hypothermia.The ability to bindinsulin with insulin receptors in skeletal muscles was evaluated by means of: Specific bindings (Bsp); binding volume of low and high insulin affinity towards insulin receptors (HAIR, LAIR); dissociation and association of complex hormone receptor constants. We calculated the products of constant association and total binding capacity (Ka1xR and Ka2xR) for low and high insulin affinity receptors. We observed a decrease in insulin plasma concentration levels in hypothermic rats as compared to normal conditions. The maximum binding volume of LAIR receptors in hypothermic rats increased, but their affinity towards insulin decreased. The administration of bradykinin to normothermic rats caused a decrease in glucose levels and, an increase in binding volume of LAIR receptors. No affinity of the hormone-receptor complex were noted. In hypothermic conditions, following the administration of bradykinin, inspite of an increase in insulin levels, we did not observe an insulin-receptor response. Conclusions: Bradykinin causes hypoglycemia without influencing the insulin-insulin receptor ineraction. The hypoglycemic effect can be linked to insulin secretion changes at the pancreas level (B islets), which does not exclude its postreceptor activity.
机译:本研究的目的是在正常条件下或低温条件下,缓激肽对大鼠肌肉组织中胰岛素-胰岛素受体相互作用的影响。通过以下方法评估结合胰岛素与骨骼肌中胰岛素受体的能力:对胰岛素受体的低和高胰岛素亲和力的结合体积(HAIR,LAIR);复杂激素受体常数的解离和缔合。我们计算了低和高胰岛素亲和力受体的恒定缔合和总结合能力(Ka1xR和Ka2xR)的乘积。与正常条件相比,我们观察到低温大鼠胰岛素血浆浓度水平降低。低温大鼠中LAIR受体的最大结合体积增加,但它们对胰岛素的亲和力下降。向正常体温的大鼠施用缓激肽导致葡萄糖水平降低,以及LAIR受体的结合体积增加。没有观察到激素受体复合物的亲和力。在低温条件下,服用缓激肽后,尽管胰岛素水平增加,但我们未观察到胰岛素受体反应。结论:缓激肽可引起低血糖症而不影响胰岛素-胰岛素受体的惰性。降血糖作用可能与胰腺水平(B胰岛)的胰岛素分泌变化有关,这并不排除其受体后活性。

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