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Young Adult LEW.1WR1 Rats Develop Dysregulated Islet Function and Impaired Liver Insulin Responses

机译:年轻成人lew1wr1大鼠开发出疑难解的胰岛功能和肝胰岛素反应受损

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Obesity in humans can lead to metabolic problems such as glucose intolerance and insulin resistance, which may result from pancreatic islet dysregulation and reduced insulin sensitivity in the liver. LEW.1WR1 (1WR1) rats became more glucose intolerant than LEW/SsNHsd (SsNHsd) rats after 12 weeks on a moderate sucrose diet.1 We hypothesize that the 1WR1 rats develop decreased insulin sensitivity due to impaired islet function and liver responses to insulin. To test this hypothesis we measured blood hormone levels and islet and liver gene expression. The terminal blood insulin (14988+/- 4024 vs. 22703+/-5101 pg/mL; p=0.0085; n=7,7) and glucagon (127.3+/-73.31 vs. 188.6+/-46.87 pg/mL; p=0.0537; n=7,7) were higher in the the 1WR1 rats. Using qRT-PCR, we determined the islets of 1WR1 rats had 3 fold increased insulin (p<0.0001; n=3,3) and glucagon (p<0.0001; n=3,2) relative gene expression. Yet, the β-cell area (22.05+/-6.408 vs. 2.276 +/-1.284mm2; p=0.0016; n=3,4) was significantly reduced in 1WR1 rats. Islet Plin5 expression was upregulated in 1WR1 rats (5.388+/-0.3806 F.C.; p<0.0001; n=3,3) indicating increased lipid droplet production, while Cyclin D (0.5726+/-0.08797 F.C.; p=0.0035; n=3,2) was downregulated indicating decreased cell cycle proliferation. These results indicate that the islets of the 1WR1 rats were insensitive to insulin signaling, which may have been caused by increased lipid droplets and a decrease in compensatory islet area. We also measured the relative expression of insulin-sensitive genes in the liver tissue to determine if there were alterations in liver insulin signaling. Downregulation of Irs-2 (0.5840+/-0.001045 F.C.; p<0.0001; n=7,7) expression was likely caused by the upregulated fat10 gene in 1WR1 rats.2 Fat10 (2315+/-0.01380 F.C.; p<0.0001; n=4,6) expression in the liver was significantly increased. Foxo1 (2.644+/- 0.001211 F.C.; p<0.0001; n=7,7) expression, which is normally reduced by insulin, was upregulated which indicates reduced insulin sensitivity. Upregulated expression of Fgf21 (2.260+/-0.002376 F.C.; p<0.0001; n=6,7), which improves glucose homeostasis, in the liver is why the fasting blood glucose of 1WR1 rats were not significantly different from the SsNHsd rats.1 In conclusion, 1WR1 rats show increasingly impaired metabolism over time. These rats have increased insulin and glucagon levels coupled with liver fat10 overexpression leading to impaired gene regulation of insulin-responsive genes in the liver. These changes synergistically increase susceptibility to pathological obesity and metabolic disease.
机译:人类的肥胖可以导致代谢问题,例如葡萄糖不耐受和胰岛素抵抗,这可能是由胰岛胰岛胰岛的失调和肝脏胰岛素敏感性降低。 Lew.1wr1(1wr1)大鼠在中等蔗糖饮食中12周后大鼠比Lew / ssnhsd(ssnhsd)大鼠更加葡萄糖.1我们假设1wr1大鼠由于胰岛损伤的胰岛功能和肝反应而产生降低的胰岛素敏感性。测试该假设,我们测量了血液激素水平和胰岛素和肝基因表达。终端血液胰岛素(14988 +/- 4024与22703 +/- 5101 pg / ml; p = 0.0085; n = 7,7)和胰高血糖素(127.3 +/- 73.31与188.6 +/- 46.87 pg / ml; P = 0.0537; N = 7,7)在1WR1大鼠中较高。使用QRT-PCR,我们确定了1wr1大鼠的胰岛3倍,胰岛素增加3倍(P <0.0001; n = 3,3)和胰高血糖素(P <0.0001; n = 3,2)相对基因表达。然而,在1WR1大鼠中,β-细胞面积(22.05 +/- 6.408与2.276 +/- 1.284m2; p = 0.0016; n = 3,4)显着降低。胰岛PLIN5表达在1WR1大鼠(5.388 +/- 0.3806 fc; p <0.0001; n = 3,3)中表达增加的脂质液滴产生,而细胞周期蛋白D(0.5726 +/- 0.08797 Fc; p = 0.0035; n = 3 2)下调表明细胞周期增殖降低。这些结果表明,1WR1大鼠的胰岛对胰岛素信号传导不敏感,这可能是由增加的脂质液滴和补偿胰岛区域的减少引起的。我们还测量了肝组织中胰岛素敏感基因的相对表达,以确定是否存在肝胰岛素信号传导的变化。 IRS-2的下调(0.5840 +/- 0.001045 Fc; P <0.0001; n = 7,7)表达可能是由1WR1大鼠的上调的FAT10基因引起的(2315 +/- 0.01380 Fc; P <0.0001; n = 4,6)肝脏中的表达显着增加。 FoxO1(2.644 +/- 0.001211 F.C; P <0.0001; n = 7,7)表达,其通常由胰岛素降低,这表明胰岛素敏感性降低。 UGF21的上调表达(2.260 +/- 0.002376 Fc; p <0.0001; n = 6,7),其改善葡萄糖稳态,在肝脏中,为什么1wr1大鼠的空腹血糖与Ssnhsd大鼠没有显着不同总之,1WR1大鼠随着时间的推移显示越来越受损的代谢。这些大鼠的胰岛素和胰高血糖素水平增加,肝脏FAT10过表达导致肝脏中胰岛素反应基因的基因调节受损。这些变化协同增加对病理肥胖和代谢疾病的敏感性。

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