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首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Manganese supplementation increases adiponectin and lowers ICAM-1 and creatinine blood levels in Zucker type 2 diabetic rats, and downregulates ICAM-1 by upregulating adiponectin multimerization protein (DsbA-L) in endothelial cells
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Manganese supplementation increases adiponectin and lowers ICAM-1 and creatinine blood levels in Zucker type 2 diabetic rats, and downregulates ICAM-1 by upregulating adiponectin multimerization protein (DsbA-L) in endothelial cells

机译:锰补充剂增加了脂联素,并降低了Zucker 2型糖尿病大鼠的ICAM-1和肌酐血液水平,并通过在内皮细胞中上调脂联蛋白多聚化蛋白(DSBA-L)来下调ICAM-1

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摘要

Blood and tissue levels of manganese (Mn) are lower in type 2 diabetic and atherosclerosis patients compared with healthy subjects. Adiponectin has anti-diabetic and anti-atherogenic properties. Impairment in Disulfide bond A-like protein (DsbA-L) is associated with low adiponectin levels and diabetes. This study investigates the hypothesis that the beneficial effects of Mn supplementation are mediated by adiponectin and DsbA-L. At 6 weeks of age, Male Zucker diabetic fatty rats (ZDF) were randomly divided into two groups: diabetic controls and Mn-supplemented diabetic rats. Each rat was supplemented with Mn (D+Mn, 16 mg/kg BW) or water (placebo, D+P) daily for 7 weeks by oral gavage. For cell culture studies, Human Umbilical Vein Endothelial Cells (HUVEC) or 3T3L1 adipocytes were pretreated with Mn (0-10 mu M MnCl2) for 24 h, followed by high glucose (HG, 25 mM) or normal glucose (5 mM) exposure for another 24 h. Mn supplementation resulted in higher adiponectin (p = 0.01), and lower ICAM-1 (p = 0.04) and lower creatinine (p = 0.04) blood levels compared to those in control ZDF rats. Mn-supplemented rats also caused reduced oxidative stress (ROS) and NADPH oxidase, and higher DsbA-L expression in the liver (p = 0.03) of ZDF rats compared to those in livers of control rats; however, Fe levels in liver were lower but not significant (p = 0.08). Similarly, treatment with high glucose (25 mM) caused a decrease in DsbA-L, which was prevented by Mn supplementation in HUVEC and adipocytes. Mechanistic studies with DsbA-L siRNA showed that the beneficial effects of Mn supplementation on ROS, NOX4, and ICAM-1 expression were abolished in DsbA-L knock-down HUVEC. These studies demonstrate that DsbA-L-linked adiponectin mediates the beneficial effects observed with Mn supplementation and provides evidence for a novel mechanism by which Mn supplementation can increase adiponectin and reduce the biomarkers of endothelial dysfunction in diabetes.
机译:与健康受试者相比,2型糖尿病和动脉粥样硬化患者的血液和组织水平较低。脂联素具有抗糖尿病和抗动脉发生性能。二硫键的损伤A样蛋白(DSBA-1)与低脂联素水平和糖尿病有关。本研究研究了Mn补充的有益效果的假设由脂联素和DSBA-1介导。 6周龄,雄性Zucker糖尿病脂肪大鼠(ZDF)随机分为两组:糖尿病对照和糖尿病患者糖尿病大鼠。通过口服饲养,每次大鼠用Mn(d + Mn,16mg / kg Bw)或水(安慰剂,d + p)进行7周。对于细胞培养研究,用Mn(0-10μmml2)预处理人脐静脉内皮细胞(Huvec)或3T3L1脂肪细胞24小时,然后高葡萄糖(Hg,25mm)或正常葡萄糖(5 mm)曝光另外24小时。与对照ZDF大鼠相比,Mn补充导致较高的脂联素(p = 0.01),较低的ICAM-1(P = 0.04)和下肌酐(P = 0.04)血液水平。与对照大鼠肝脏相比,Mn补充大鼠也引起了降低的氧化应激(ROS)和NADPH氧化酶,ZDF大鼠的肝脏(P = 0.03)中的较高DSBA-L表达;然而,肝脏的Fe水平较低但不显着(p = 0.08)。类似地,用高葡萄糖(25mm)的处理导致DSBA-L的降低,通过MN补充Huvec和Adipocytes。 DSBA-L siRNA的机械研究表明,在DSBA-L敲除HUVEC中消除了MN补充对ROS,NOX4和ICAM-1表达的有益效果。这些研究表明,DSBA-L链接脂联素介导用Mn补充所观察到的有益效果,并提供了一种新机制的证据,通过该机制可以增加脂肪蛋白并减少糖尿病中内皮功能障碍的生物标志物。

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