Imeglimin, unlike metformin, does not perturb differentiation of human induced pluripotent stem cells towards pancreatic β-like cells and rather enhances gain in β cell identity gene sets.

IF 3.2 3区 医学 Journal of Diabetes Investigation Pub Date : 2025-01-20 DOI:10.1111/jdi.14410
Tasuku Imada, Shugo Sasaki, Hiroki Yamaguchi, Ayaka Ueda, Dan Kawamori, Naoto Katakami, Iichiro Shimomura
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Abstract

Aims/introduction: Metformin treatment for hyperglycemia in pregnancy (HIP) beneficially improves maternal glucose metabolism and reduces perinatal complications. However, metformin could impede pancreatic β cell development via impaired mitochondrial function. A new anti-diabetes drug imeglimin, developed based on metformin, improves mitochondrial function. Here we examine the effect of imeglimin on β cell differentiation using human induced pluripotent stem cell (iPSC)-derived pancreatic islet-like spheroid (SC-islet) models.

Materials and methods: Human iPSCs are differentiated into SC-islets by three-dimensional culture with and without imeglimin or metformin. Differentiation efficiencies of SC-islets were analyzed by flow cytometry, immunostaining, quantitative PCR, and insulin secretion assay. RNA sequencing and oxygen consumption rate were obtained for further characterization of SC-islets. SC-islets were cultured with proinflammatory cytokines, in part mimicking the uterus environment in HIP.

Results: Metformin perturbed SC-islet differentiation while imeglimin did not alter it. Furthermore, imeglimin enhanced the gene expressions of β cell lineage markers. Maintenance of mitochondrial function and optimization of TGF-β and Wnt signaling were considered potential mechanisms for augmented β cell maturation by imeglimin. In the presence of proinflammatory cytokines, imeglimin ameliorated β cell differentiation impaired by cytokines and metformin.

Conclusions: Imeglimin does not perturb differentiation of SC-islet cells and rather enhances gain in β cell identity gene sets in contrast to metformin. This may lead to the improvement of in vitro β cell differentiation protocols.

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与二甲双胍不同,依米明不会干扰人诱导多能干细胞向胰腺β样细胞的分化,而是增强β细胞识别基因集的增益。
目的/简介:二甲双胍治疗妊娠期高血糖症(HIP)有利于改善孕妇糖代谢,减少围产期并发症。然而,二甲双胍可能通过线粒体功能受损来阻碍胰腺β细胞的发育。以二甲双胍为基础开发的新型抗糖尿病药物伊米林(imimimin)可以改善线粒体功能。本研究采用人诱导多能干细胞(iPSC)衍生的胰岛样球体(SC-islet)模型,研究伊米霉素对β细胞分化的影响。材料和方法:用三维培养方法将人多能干细胞分化为sc -胰岛。采用流式细胞术、免疫染色、定量PCR和胰岛素分泌实验分析sc -胰岛的分化效率。为了进一步表征sc -胰岛,我们获得了RNA测序和耗氧量。用促炎细胞因子培养sc -胰岛,部分模拟HIP的子宫环境。结果:二甲双胍对sc -胰岛分化有干扰作用,而依米霉素对sc -胰岛分化无影响。此外,依米霉素还能增强β细胞谱系标记基因的表达。维持线粒体功能、优化TGF-β和Wnt信号被认为是伊米霉素增强β细胞成熟的潜在机制。在促炎细胞因子存在的情况下,伊米霉素改善了细胞因子和二甲双胍受损的β细胞分化。结论:与二甲双胍相比,依美乐明不会干扰sc -胰岛细胞的分化,而是增加β细胞身份基因集的增益。这可能导致体外β细胞分化方案的改进。
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来源期刊
Journal of Diabetes Investigation
Journal of Diabetes Investigation Medicine-Internal Medicine
自引率
9.40%
发文量
218
期刊介绍: Journal of Diabetes Investigation is your core diabetes journal from Asia; the official journal of the Asian Association for the Study of Diabetes (AASD). The journal publishes original research, country reports, commentaries, reviews, mini-reviews, case reports, letters, as well as editorials and news. Embracing clinical and experimental research in diabetes and related areas, the Journal of Diabetes Investigation includes aspects of prevention, treatment, as well as molecular aspects and pathophysiology. Translational research focused on the exchange of ideas between clinicians and researchers is also welcome. Journal of Diabetes Investigation is indexed by Science Citation Index Expanded (SCIE).
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