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幼年大鼠溺水应激后胰岛素信号传导变化及外源胰岛素治疗反应
引用本文:何勇,沈南平,吉山宝,徐惠良,吕贞燕.幼年大鼠溺水应激后胰岛素信号传导变化及外源胰岛素治疗反应[J].中国小儿急救医学,2005,16(1):263-265,271.
作者姓名:何勇  沈南平  吉山宝  徐惠良  吕贞燕
作者单位:江苏省无锡市儿童医院重症监护室,214001;
摘    要:Objective To explore the alteration of insulin signal transduction in drowning-induced stress hyperglycemia and to investigate therapeutic effect of insulin on it.Methods Stress hyperglycemia model was induced by drowning.Thirty-two infant rats were randomized into control,drowning,air resuscitation and air-insulin resuscitation groups.Insulin was injected abdominally into the air-insulin resuscitation rats.Fasting serum glucose and insulin were determined routinely,and protein expressions and serine phosphorylation levels of insulin receptor substrate 1(IRS-1) in muscle tissue were detected by Western blot and immunoprecipitation.The expressions of glucose transporter 4(GLUT4) in the intracellular and plasma membranes of muscle tissue were detected by Western blot.Results In the drowning group,insulin resistance index(HOMA-IR) increased significantly as compared with that of the control group,but the level of IRS-1 had no significantly change as compared with the other three groups.As compared with that of the drowning group(0.71±0.12),IRS-1 serine phosphorylation levels of the two resuscitation groups decreased significantly(0.56±0.13 and 0.46±0.08 respectively).The intracellular GLUT4 expression in the two resuscitation groups(1.82±0.11 and 1.96±0.28 respectively)increased significantly in contrast to that of the drowning group(1.45±0.15),and the air-insulin resuscitation groups showed an especially high increase of intracellular GLUT4 expression.Conclusion During the drowning-induced stress hyperglycemia,the alteration of serine phosphorylation and GLUT4 distribution is one of the important mechanism of insulin resistance.Insulin may decrease the blood glucose through decreasing serine phosphorylation levels of IRS-1 and increasing the intracellular GLUT4 expressions.

关 键 词:溺水    应激    胰岛素    信号传导    

The alteration of insulin signal transduction in drowning-induced stress hyperglycemia Infant rats and the therapeutic effect of iusulin
Abstract:
Keywords:DrowningStressInsulinSignal transduction
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