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Natural antibiotics and insulin sensitivity: the role of bactericidal/permeability-increasing protein.

机译:天然抗生素和胰岛素敏感性:杀菌/通透性增强蛋白的作用。

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The innate immune system can immediately respond to microorganism intrusion by helping to prevent further invasion. Bactericidal/permeability-increasing protein (BPI) is a major constituent of neutrophils that possesses anti-inflammatory properties. Inflammation is increasingly recognized as a component of the metabolic syndrome. We hypothesized that the production of BPI could be linked to insulin sensitivity and glucose tolerance. We studied circulating BPI across categories of glucose tolerance. We also studied whether these cross-sectional associations were of functional importance. For this reason, we investigated circulating bioactive lipopolysaccharide and the effects of changing insulin action-after treatment with an insulin sensitizer (metformin)-on circulating BPI in subjects with glucose intolerance. Finally, we tested whether a 3'-untranslated region (UTR) BPI polymorphism led to differences in BPI and insulin action among nondiabetic subjects. Age- and BMI-adjusted circulating BPI was significantly lower among patients with type 2 diabetes. Circulating BPI correlated negatively with fasting and postload glucose and insulin concentrations. In subjects with glucose intolerance, BPI was also linked to BMI, waist-to-hip ratio, and age- and BMI-adjusted insulin sensitivity. Bioactive lipopolysaccharide was negatively correlated with circulating BPI (r = -0.57, P < 0.0001) and positively with plasma lipopolysaccharide-binding protein (r = 0.54, P = 0.002). In parallel to improved insulin sensitivity, plasma BPI significantly increased in the metformin group but not in the placebo group. A 3'-UTR BPI polymorphism was simultaneously associated with plasma BPI concentration, waist-to-hip ratio, fasting and postload insulin concentration, fasting plasma triglycerides, and insulin sensitivity. These findings suggest that this component of the innate immune system is associated with metabolic pathways.
机译:先天免疫系统可通过帮助防止进一步入侵而立即对微生物入侵做出反应。杀菌/通透性增加蛋白(BPI)是嗜中性粒细胞的主要成分,具有抗炎特性。炎症日益被认为是代谢综合征的组成部分。我们假设BPI的产生可能与胰岛素敏感性和葡萄糖耐量有关。我们研究了葡萄糖耐量跨类别的循环BPI。我们还研究了这些横截面关联是否具有功能重要性。因此,我们研究了葡萄糖耐受不良患者的循环生物活性脂多糖和胰岛素敏化剂(二甲双胍)治疗后改变胰岛素作用对循环BPI的影响。最后,我们测试了3'非翻译区(UTR)BPI多态性是否导致非糖尿病受试者BPI和胰岛素作用的差异。在2型糖尿病患者中,经年龄和BMI调整的循环BPI显着降低。循环中的BPI与空腹,负荷后葡萄糖和胰岛素浓度呈负相关。在患有葡萄糖耐受不良的受试者中,BPI还与BMI,腰臀比以及年龄和BMI调整后的胰岛素敏感性相关。生物活性脂多糖与循环BPI呈负相关(r = -0.57,P <0.0001),与血浆脂多糖结合蛋白呈正相关(r = 0.54,P = 0.002)。在改善胰岛素敏感性的同时,二甲双胍组的血浆BPI明显升高,而安慰剂组则没有。 3'-UTR BPI多态性与血浆BPI浓度,腰臀比,空腹和负荷后胰岛素浓度,空腹血浆甘油三酸酯和胰岛素敏感性同时相关。这些发现表明,先天免疫系统的这一成分与代谢途径有关。

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