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Role of microRNAs in the age-associated decline of pancreatic beta cell function in rat islets.

机译:microRNA在大鼠胰岛中与年龄相关的胰岛β细胞功能衰退中的作用。

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摘要

AIMS/HYPOTHESIS: Ageing can lead to reduced insulin sensitivity and loss of pancreatic beta cell function, predisposing individuals to the development of diabetes. The aim of this study was to assess the contribution of microRNAs (miRNAs) to age-associated beta cell dysfunction.METHODS: The global mRNA and miRNA profiles of 3- and 12-month-old rat islets were collected by microarray. The functional impact of age-associated differences in miRNA expression was investigated by mimicking the observed changes in primary beta cells from young animals.RESULTS: Beta cells from 12-month-old rats retained normal insulin content and secretion, but failed to proliferate in response to mitotic stimuli. The islets of these animals displayed modifications at the level of several miRNAs, including upregulation of miR-34a, miR-124a and miR-383, and downregulation of miR-130b and miR-181a. Computational analysis of the transcriptomic modifications observed in the islets of 12-month-old rats revealed that the differentially expressed genes were enriched for miR-34a and miR-181a targets. Indeed, the induction of miR-34a and reduction of miR-181a in the islets of young animals mimicked the impaired beta cell proliferation observed in old animals. mRNA coding for alpha-type platelet-derived growth factor receptor, which is critical for compensatory beta cell mass expansion, is directly inhibited by miR34a and is likely to be at least partly responsible for the effects of this miRNA.CONCLUSIONS/INTERPRETATION: Changes in the level of specific miRNAs that occur during ageing affect the proliferative capacity of beta cells. This might reduce their ability to expand under conditions of increased insulin demand, favouring the development of type 2 diabetes.
机译:目的/假设:衰老可导致胰岛素敏感性降低和胰腺β细胞功能丧失,使个体容易患上糖尿病。这项研究的目的是评估microRNA(miRNA)对与年龄相关的β细胞功能障碍的作用。方法:通过微阵列收集3个月和12个月大大鼠胰岛的全局mRNA和miRNA图谱。通过模拟观察到的年轻动物的初级β细胞的变化,研究了与年龄相关的miRNA表达差异的功能影响。结果:12个月大大鼠的β细胞保留了正常的胰岛素含量和分泌,但未能在反应中增殖有丝分裂的刺激。这些动物的胰岛在几种miRNA的水平上显示出修饰,包括miR-34a,miR-124a和miR-383的上调以及miR-130b和miR-181a的下调。在12个月大大鼠的胰岛中观察到的转录组修饰的计算分析表明,差异表达的基因富含miR-34a和miR-181a靶标。实际上,在幼小动物的胰岛中诱导miR-34a和减少miR-181a模仿了在老动物中观察到的受损的β细胞增殖。编码α型血小板源性生长因子受体的mRNA(对于代偿性β细胞质量扩张至关重要)直接被miR34a抑制,并且可能至少部分负责该miRNA的作用。结论/解释:衰老过程中出现的特定miRNA的水平会影响β细胞的增殖能力。在胰岛素需求增加的情况下,这可能会降低其扩张的能力,从而有利于2型糖尿病的发展。

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