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首页> 外文期刊>American Journal of Physiology >Overexpression of intraislet ghrelin enhances β-cell proliferation after streptozotocin-induced β-cell injury in mice
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Overexpression of intraislet ghrelin enhances β-cell proliferation after streptozotocin-induced β-cell injury in mice

机译:链脲佐菌素诱导的小鼠β细胞损伤后胰岛内生长素释放肽的过表达增强β细胞增殖

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Previously, we reported that exogenous administration of ghrelin ameliorates glucose metabolism in a neonate streptozotocin (STZ)-induced diabetic rat model through enhancement of β-cell proliferation. However, it was not clear whether the observed β-cell proliferation was a direct or indirect effect (e.g., via orexigenic or growth hormone-stimulated pathways) of ghrelin activity. Here, we aimed to investigate whether ghrelin directly impacts β-cell proliferation after STZ-induced injury in mice. Seven-week-old male rat insulin II promoter-ghrelin internal ribosomal sequence ghrelin O-acyltransferase transgenic (RIP-GG Tg) mice, which have elevated pancreatic ghrelin levels, but only minor changes in plasma ghrelin levels when fed a medium-chain triglyceride-rich diet, were treated with STZ. Then, serum insulin, pancreatic insulin mRNA expression, and islet histology were evaluated. We found that the serum insulin levels, but not blood glucose levels, of RIP-GG Tg mice were significantly ameliorated 14 days post-STZ treatment. Pancreatic insulin mRNA expression was significantly elevated in RIP-GG Tg mice, and β-cell numbers in islets were increased. Furthermore, the number of phospho-histone H3+ or Ki67+ proliferating β-cells was significantly elevated in RIP-GG Tg mice, whereas the apoptotic indexes within the islets, as determined by TUNEL assay, were not changed. These results indicate that ghrelin can directly stimulate β-cell proliferation in vivo after β-cell injury even without its orexigenic or GH-stimulating activities, although it did not have enough impact to normalize the glucose tolerance in adult mice.
机译:先前,我们报道外源性生长激素释放肽通过增强β细胞增殖来改善新生的链脲佐菌素(STZ)诱导的糖尿病大鼠模型中的葡萄糖代谢。但是,尚不清楚观察到的β细胞增殖是生长素释放肽活性的直接或间接作用(例如,通过致癌或生长激素刺激的途径)。在这里,我们旨在研究生长素释放肽是否直接影响小鼠STZ诱导的损伤后的β细胞增殖。七周大的雄性大鼠胰岛素II启动子-ghrelin内部核糖体序列ghrelin O-酰基转移酶转基因(RIP-GG Tg)小鼠,胰腺ghrelin水平升高,但饲喂中链甘油三酸酯时血浆ghrelin水平仅发生微小变化饮食丰富,用STZ治疗。然后,评估血清胰岛素,胰腺胰岛素mRNA表达和胰岛组织学。我们发现,在STZ治疗后14天,RIP-GG Tg小鼠的血清胰岛素水平而非血糖水平得到了明显改善。在RIP-GG Tg小鼠中,胰腺胰岛素mRNA表达显着升高,并且胰岛中的β细胞数量增加。此外,在RIP-GG Tg小鼠中,磷酸组蛋白H3 +或Ki67 +增殖性β细胞的数量显着增加,而胰岛内的凋亡指数(通过TUNEL分析确定)没有改变。这些结果表明,尽管没有足够的影响来使成年小鼠的葡萄糖耐量正常化,但生长素释放肽可直接刺激β细胞损伤后的体内β细胞增殖,即使没有其促食欲或GH刺激活性。

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