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首页> 外文期刊>Biomedicine & pharmacotherapy =: Biomedecine & pharmacotherapie >Standardized Mori ramulus extract improves insulin secretion and insulin sensitivity in C57BLKS/J db/db mice and INS-1 cells
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Standardized Mori ramulus extract improves insulin secretion and insulin sensitivity in C57BLKS/J db/db mice and INS-1 cells

机译:标准化的Mori ramulus提取物改善了C57Blks / J DB / DB小鼠和INS-1细胞中的胰岛素分泌和胰岛素敏感性

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摘要

Abnormalities in the hyperbolic relationship between insulin sensitivity and insulin secretion may cause oxidative stress and non-enzymatic glycation, resulting in an increased risk of type 2 diabetes. Here, we performed a 14-week study to investigate the effects of ethanolic extract of Mori ramulus (MRE; 0, 800, and 1600 mg/kg body weight) and its signature component oxyresveratrol (OXY; 800 mg/kg body weight) on b-cell dysfunction and insulin resistance in C57BLKS/J db/db mice fed with a high-fat diet. Compared with the diabetic control group, the high-dose MRE group showed a significant decrease in fasting blood glucose (p = 0.0024); a significant increase in insulin secretion as measured by insulin (p = 0.0012) and C-peptide (p = 0.0103) levels in plasma and insulin content (p = 0.0440) and homeobox factor-1 protein expression (p = 0.0148) in the pancreas; and a significant increase in insulin sensitivity as measured by insulin receptor mRNA expression in the liver (p = 0.0179) and adipose tissue (p = 0.0491). In addition, improvements in the reactive oxygen species level and inflammatory pancreatic and hepatic tissue damage were also observed in the MRE group as assessed by histological findings. A similar but weaker effect was found in the OXY group. Furthermore, we observed a potentiating effect of MRE and OXY on insulin secretion in INS-1 cells in the presence of 27 mM glucose, together with an anti-glycation effect as indicated by methylglyoxal-trapping capacity and inhibition of advanced glycation end-product formation. Taken together, these data suggest that MRE could ameliorate b-cell dysfunction and insulin resistance by reducing oxidative damage and advanced glycation end-product (Wagenknecht et al., 2003) formation and that these effects are due, at least in part, to OXY. (C) 2017 Elsevier Masson SAS. All rights reserved.
机译:胰岛素敏感性和胰岛素分泌之间的双曲关系异常可能导致氧化应激和非酶促糖化,导致2型糖尿病的风险增加。在这里,我们进行了14周的研究,探讨了森林酸(MRE; 0,800和1600mg / kg体重)的乙醇提取物的作用及其签名组分Oxysvertrol(Oxy; 800mg / kg体重) B细胞功能障碍和C57BLK / J DB / DB小鼠中的胰岛素抵抗饲喂高脂饮食。与糖尿病对照组相比,高剂量MRE组在空腹血糖中显示出显着降低(P = 0.0024);通过胰岛素(p = 0.0012)和胰岛素含量(p = 0.0440)和胰岛素含量(p = 0.0440)和Homeobox因子-1蛋白表达(P = 0.0148)测量的胰岛素分泌的显着增加;通过肝脏受体mRNA表达测量的胰岛素敏感性的显着增加(p = 0.0179)和脂肪组织(P = 0.0491)。此外,在MRE组中也观察到反应性氧物质水平和炎症胰腺和肝组织损伤的改进,如组织学发现评估。在氧学组中发现了类似但较弱的效果。此外,我们观察到MRE和Oxy在27mM葡萄糖存在下在INS-1细胞中的胰岛素分泌的增强效果,以及如甲基乙二醛捕获能力所示的抗糖化效果和先进的糖糖末端产物形成所示。这些数据表明,MRE可以通过减少氧化损伤和先进的糖化末端产物(WAGENKNECHT等,2003)形成,并且这些效应至少部分地是氧化的,MRE可以改善B细胞功能障碍和胰岛素抵抗力。 (c)2017年Elsevier Masson SAS。版权所有。

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