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Regulated β-Cell Regeneration in the Adult Mouse Pancreas

机译:成年小鼠胰腺中受调控的β细胞再生

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Several studies have shown that the adult pancreas possesses a limited potential for β-cell regeneration upon tissue injury. One of the difficulties in studying β-cell regeneration has been the lack of a robust, synchronized animal model system that would allow controlled regulation of β-cell loss and subsequent proliferation in adult pancreas. Here we present a transgenic mouse regeneration model in which the c-Myc transcription factor/mutant estrogen receptor (cMycER~(TAM)) fusion protein can be specifically activated in mature β-cells. We have studied these transgenic mice by immunohistochemical and biochemical methods to assess the ablation and posterior regeneration of β-cells. Activation of the cMycER~(TAM) fusion protein results in synchronous and selective β-cell apoptosis followed by the onset of acute diabetes. Inacti-vation of c-Myc leads to gradual regeneration of insulin-expressing cells and reversal of diabetes. Our results demonstrate that the mature pancreas has the ability to fully recover from almost complete ablation of all existing β-cells. Our results also suggest the regeneration of β-cells is mediated by replication of P-cells rather than neogenesis from pancreatic ducts.
机译:几项研究表明,成年胰腺在组织损伤时具有有限的β细胞再生潜能。研究β细胞再生的困难之一是缺乏健壮的,同步的动物模型系统,该系统无法对成年胰腺的β细胞丢失和随后的增殖进行可控的调节。在这里,我们提出了一种转基因小鼠再生模型,其中c-Myc转录因子/突变雌激素受体(cMycER〜(TAM))融合蛋白可以在成熟的β细胞中被特异性激活。我们已经通过免疫组织化学和生化方法研究了这些转基因小鼠,以评估β细胞的消融和后再生。 cMycER〜(TAM)融合蛋白的激活导致同步性和选择性β细胞凋亡,随后发生急性糖尿病。 c-Myc的失活导致胰岛素表达细胞的逐渐再生和糖尿病的逆转。我们的结果表明,成熟的胰腺具有从所有现有β细胞几乎完全消融中完全恢复的能力。我们的结果还表明,β细胞的再生是通过P细胞的复制而不是胰管的新生来介导的。

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