Metabolism Division, Department of Medicine, University of Padova, Padova, Italy.
Diabetes. 2013 Aug;62(8):2699-708. doi: 10.2337/db12-1127. Epub 2013 Mar 8.
We tested the effects of insulin on production of nitrous oxide (NO)-related substances (nitrites and nitrates [NOx]) after (15)N-arginine intravenous infusion and on asymmetric dimethylarginine (ADMA) and symmetric dimethylarginine (SDMA) concentrations in conditions reportedly associated with altered NO availability, i.e., aging, hypertension, hypercholesterolemia, and type 2 diabetes mellitus (T2DM). A total of 26 male subjects (age 23-71 years, BMI 23-33 kg/m(2)), some of whom were affected by mixed pathologic features, were enrolled. NOx fractional synthesis rate (FSR) was lower in elderly (P < 0.015) and T2DM subjects (P < 0.03) than in matched control subjects. Hyperinsulinemia generally increased both NOx FSR and absolute synthesis rate (ASR) and reduced NOx, ADMA, and SDMA concentrations. Insulin sensitivity was impaired only in T2DM. With use of simple linear regression analysis across all subjects, age was inversely correlated with both NOx FSR (R(2) = 0.23, P < 0.015) and ASR (R(2) = 0.21, P < 0.02). NOx FSR inversely correlated with both ADMA and SDMA. With use of multiple regression analysis and various models, NOx FSR remained inversely associated with age and ADMA, whereas ASR was inversely associated with age and diabetes. No association with insulin sensitivity was found. We conclude that whole-body NOx production is decreased in aging and T2DM. Age, ADMA concentration, and T2DM, but not insulin resistance, appear as negative regulators of whole-body NOx production.
我们测试了胰岛素对静脉输注(15)N-精氨酸后一氧化氮(NO)相关物质(亚硝酸盐和硝酸盐[NOx])的产生以及不对称二甲基精氨酸(ADMA)和对称二甲基精氨酸(SDMA)浓度的影响,这些条件与 NO 可用性的改变有关,即衰老、高血压、高胆固醇血症和 2 型糖尿病(T2DM)。共纳入 26 名男性受试者(年龄 23-71 岁,BMI 23-33kg/m2),其中一些人受到混合病理特征的影响。NOx 分数合成率(FSR)在老年人(P < 0.015)和 T2DM 患者(P < 0.03)中低于匹配的对照组。高胰岛素血症通常会增加 NOx FSR 和绝对合成率(ASR),并降低 NOx、ADMA 和 SDMA 浓度。仅在 T2DM 中胰岛素敏感性受损。在所有受试者中使用简单线性回归分析,年龄与 NOx FSR(R2 = 0.23,P < 0.015)和 ASR(R2 = 0.21,P < 0.02)均呈负相关。NOx FSR 与 ADMA 和 SDMA 均呈负相关。使用多元回归分析和各种模型,NOx FSR 仍与年龄和 ADMA 呈负相关,而 ASR 与年龄和糖尿病呈负相关。与胰岛素敏感性无关。我们的结论是,全身 NOx 生成在衰老和 T2DM 中减少。年龄、ADMA 浓度和 T2DM,但不是胰岛素抵抗,似乎是全身 NOx 生成的负调节因子。