首页> 外文期刊>Regulatory peptides. >Abnormally decreased NO and augmented CO production in islets of the leptin-deficient ob/ob mouse might contribute to explain hyperinsulinemia and islet survival in leptin-resistant type 2 obese diabetes.
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Abnormally decreased NO and augmented CO production in islets of the leptin-deficient ob/ob mouse might contribute to explain hyperinsulinemia and islet survival in leptin-resistant type 2 obese diabetes.

机译:瘦素缺陷型ob / ob小鼠的胰岛中NO异常减少和CO产生增加可能有助于解释高胰岛素血症和瘦素抵抗性2型肥胖糖尿病患者的胰岛存活。

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摘要

The role of the gaseous messengers NO and CO for beta-cell function and survival is controversial. We examined this issue in the hyperglycemic-hyperinsulinemic ob/ob mouse, an animal model of type 2 obese diabetes, by studying islets from obese vs lean mice regarding glucose-stimulated insulin release in relation to islet NO and CO production and the influence of modulating peptide hormones. Glucose-stimulated increase in ncNOS-activity in incubated lean islets was converted to a decrease in ob/ob islets associated with markedly increased insulin release. Both types of islets displayed iNOS activity appearing after ~60 min in high-glucose. In ob/ob islets the insulinotropic peptides glucagon, GLP-1 and GIP suppressed NOS activities and amplified glucose-stimulated insulin release. The insulinostatic peptide leptin induced the opposite effects. Suppression of islet CO production inhibited, while stimulation amplified glucose-stimulated insulin release. Nonincubated isolated islets from young and adult obese mice displayed very low ncNOS and negligible iNOS activity. In contrast, production of CO, a NOS inhibitor, was impressively raised. Glucose injections induced strong activities of islet NOS isoforms in lean but not in obese mice and confocal microscopy revealed iNOS expression only in lean islets. Islets from ob/ob mice existing in a hyperglycemic in vivo milieu maintain elevated insulin secretion and protection from glucotoxicity through a general suppression of islet NOS activities achieved by leptin deficiency, high CO production and insulinotropic cyclic-AMP-generating hormones. Such a beneficial effect on islet function and survival might have its clinical counterpart in human leptin-resistant type 2 obese diabetes with hyperinsulinemia.
机译:气体信使NO和CO在β细胞功能和存活中的作用是有争议的。我们通过研究肥胖与瘦小鼠的胰岛中葡萄糖刺激的胰岛素释放与胰岛NO和CO产生的关系以及调节的影响,在2型肥胖糖尿病动物模型高血糖高胰岛素ob / ob小鼠中检查了这个问题肽激素。在温育的瘦小岛中,葡萄糖刺激的ncNOS活性的增加转化为与胰岛素释放显着增加相关的ob / ob胰岛的减少。两种类型的胰岛均显示iNOS活性在高葡萄糖下约60分钟后出现。在ob / ob胰岛中,促胰岛素肽胰高血糖素,GLP-1和GIP抑制NOS活性并增强葡萄糖刺激的胰岛素释放。胰岛素抑制肽瘦素诱导相反的作用。胰岛一氧化碳的产生受到抑制,而刺激则增加了葡萄糖刺激的胰岛素释放。来自未成年和成年肥胖小鼠的未孵育的胰岛显示出非常低的ncNOS和可忽略的iNOS活性。相反,令人惊讶地提高了NOS抑制剂CO的产生。葡萄糖注射在瘦肉中诱导了胰岛NOS亚型的强活性,但在肥胖小鼠中却没有,共聚焦显微镜检查显示,iNOS仅在瘦肉胰岛中表达。存在于体内高血糖环境中的ob / ob小鼠的胰岛通过普遍抑制由瘦素缺乏,高CO生成和促胰岛素的环状AMP产生的胰岛NOS活性,维持了胰岛素分泌的增加,并防止了糖中毒。这种对胰岛功能和存活的有益作用可能在具有高胰岛素血症的人瘦素抵抗型2型肥胖糖尿病中与临床相对应。

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