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Effects of activin A on survival, function and gene expression of pancreatic islets from non-diabetic and diabetic human donors

机译:激活素A对非糖尿病和糖尿病人供体胰岛存活,功能和基因表达的影响

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摘要

Emerging evidence suggests that activin with its associated receptors, second messengers, and antagonists would be excellent targets for therapeutic drug development in the treatment of diabetes. We undertook the current study to investigate the ability to extrapolate findings from rodent studies to human islets in which data thus far has been scarce. We tested the hypothesis that human islets synthesize activin and that activin participates in the regulation of islet beta-cells. Human islets from 33 separate isolations were categorized based on functional status, culture status and diabetic status. Statistical comparisons were made by ANOVA with Tukey post-hoc adjustment for multiple comparisons. Experiments investigating activin utilized qPCR, FACS cell sorting, immunofluorescent antibody staining, functionality assays, viability assays and protein secretion assays. We have defined the transcript expression patterns of activin and the TGF beta superfamily in human islets. We found INHBA (the gene encoding activin A) to be the most highly expressed of the superfamily in normal, cultured islets. We elucidated a link between the islet microenvironment and activin A. We found differential ligand expression based on diabetic, culture and functional status. Further, this is also the first report that links direct effects of activin A with the ability to restore glucose-stimulated insulin secretion in human islets from type 2 diabetic donors thereby establishing the relevance of targeting activin for therapeutic drug development.
机译:新兴证据表明,激活素及其相关受体,第二信使和拮抗剂将成为糖尿病治疗药物开发的理想靶标。我们进行了本项研究,以研究将啮齿类动物研究的结果推论到人类胰岛的能力,而迄今为止,该研究还缺乏数据。我们测试了人类胰岛合成激活素和激活素参与胰岛β细胞调节的假设。根据功能状态,培养状态和糖尿病状态对来自33个单独分离株的人类胰岛进行分类。通过ANOVA与Tukey事后调整进行统计比较,以进行多次比较。研究激活素的实验利用了qPCR,FACS细胞分选,免疫荧光抗体染色,功能性测定,生存力测定和蛋白质分泌测定。我们已经定义了人类胰岛中激活素和TGFβ超家族的转录表达模式。我们发现INHBA(编码激活素A的基因)在正常的胰岛中是超家族中表达最高的。我们阐明了胰岛微环境和激活素A之间的联系。我们发现了基于糖尿病,培养物和功能状态的不同配体表达。此外,这也是第一个报道,将激活素A的直接作用与恢复来自2型糖尿病供体的人胰岛中葡萄糖刺激的胰岛素分泌的能力联系起来,从而确立了靶向激活素与治疗药物开发的相关性。

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