首页> 外文期刊>Diabetologia: clinical and experimental diabetes and metabolism >Leucocytes are a major source of circulating nicotinamide phosphoribosyltransferase (NAMPT)/pre-B cell colony (PBEF)/visfatin linking obesity and inflammation in humans
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Leucocytes are a major source of circulating nicotinamide phosphoribosyltransferase (NAMPT)/pre-B cell colony (PBEF)/visfatin linking obesity and inflammation in humans

机译:白细胞是人体内肥胖与炎症相关的循环烟酰胺磷酸核糖基转移酶(NAMPT)/ B前细胞集落(PBEF)/ visfatin的主要来源

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Aims/hypothesis Nicotinamide phosphoribosyltransferase (NAMPT) is a multifunctional protein potentially involved in obesity and glucose metabolism. We systematically studied the association between circulating NAMPT, obesity, interventions and glucose metabolism and investigated potential underlying inflammatory mechanisms. Methods Fasting morning NAMPT serum levels were measured in cohorts of lean vs obese children, cohorts of intervention by lifestyle, exercise and bariatric surgery, and during an OGTT. In addition, mRNA expression, protein production and enzymatic activity of NAMPT were assessed from isolated leucocytes and subpopulations. Results Circulating NAMPT was significantly elevated in obese compared with lean children and declined after obesity interventions concomitantly with the decline in BMI, high-sensitivity C-reactive protein (hsCrP) and leucocyte counts. Circulating NAMPT significantly correlated with glucose metabolism and cardiovascular variables in univariate analyses, but only the association with glucose response during an OGTT was independent from BMI. We therefore assessed the NAMPT dynamic following an oral glucose load and found a significant decline of NAMPT levels to 77.0?±?0.1% as a function of time, and insulin-to-glucose ratio during an OGTT in obese insulin-resistant adolescents. Circulating NAMPT was, however, most strongly associated with leucocyte counts (r?=?0.46, p?NAMPT expression among several tissues and found that NAMPT was predominantly expressed in leucocytes. In subsequent analyses of leucocyte subpopulations, we identified higher NAMPT protein concentrations in lysates of granulocytes and monocytes compared with lymphocytes, whereas granulocytes secreted highest amounts of NAMPT protein into cell culture supernatant fractions. We confirmed nicotinamide mononucleotide enzymatic activity of NAMPT in all lysates and supernatant fractions. In monocytes, NAMPT release was significantly stimulated by lipopolysaccharide (LPS) exposure. Conclusions Leucocytes are a major source of enzymatically active NAMPT, which may serve as a biomarker or even mediator linking obesity, inflammation and insulin resistance.
机译:目的/假设烟酰胺磷酸核糖基转移酶(NAMPT)是一种多功能蛋白质,可能与肥胖症和葡萄糖代谢有关。我们系统地研究了循环NAMPT,肥胖,干预措施和葡萄糖代谢之间的关联,并研究了潜在的潜在炎症机制。方法测量瘦弱与肥胖儿童队列,生活方式,运动和减肥手术以及OGTT干预期间队列的清晨NAMPT血清水平。另外,从分离的白细胞和亚群中评估了NAMPT的mRNA表达,蛋白质产生和酶活性。结果与肥胖儿童相比,肥胖儿童的循环NAMPT显着升高,并且在肥胖干预后,其BMI,高敏C反应蛋白(hsCrP)和白细胞计数均下降。在单变量分析中,循环中的NAMPT与血糖代谢和心血管变量显着相关,但只有与OGTT期间的葡萄糖反应相关才独立于BMI。因此,我们评估了口服葡萄糖负荷后NAMPT的动态变化,发现在肥胖的胰岛素抵抗性青少年中,NAMPT水平随时间以及OGTT期间胰岛素与葡萄糖的比例显着下降至77.0±0.1±1%。然而,循环中的NAMPT与白细胞计数的相关性最大(r?=?0.46,p?NAMPT在几个组织中的表达,发现NAMPT主要在白细胞中表达。在随后的白细胞亚群分析中,我们发现NAMPT蛋白浓度较高。与淋巴细胞相比,粒细胞和单核细胞的裂解物含量更高,而粒细胞向细胞培养上清液组分中分泌的NAMPT蛋白含量最高。我们证实了烟酰胺和单核细胞上清液组分中NAMPT的单核苷酸酶活性。结论白细胞是酶促活性NAMPT的主要来源,可作为肥胖,炎症和胰岛素抵抗的生物标志物或介质。

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