首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Differentiation of Human Induced Pluripotent Stem Cells into Insulin-Like Cell Clusters with miR-186 and miR-375 by using chemical transfection
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Differentiation of Human Induced Pluripotent Stem Cells into Insulin-Like Cell Clusters with miR-186 and miR-375 by using chemical transfection

机译:通过化学转染将人类诱导的多能干细胞分化为具有miR-186和miR-375的胰岛素样细胞簇

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摘要

Diabetes mellitus is characterized by either the inability to produce insulin or insensitivity to insulin secreted by the body. Islet cell replacement is an effective approach for diabetes treatment; however, it is not sufficient for all the diabetic patients. MicroRNAs (miRNAs) are a class of small noncoding RNAs that play an important role in mediating a broad and expanding range of biological activities, such as pancreas development. The present study aimed to develop a protocol to efficiently differentiate human induced pluripotent stem (iPS) cells into islet-like cell clusters (ILCs) in vitro by using miR-186 and miR-375. The human iPS colonies were transfected with hsa-miR-186 and hsa-miR-375 by using siPORT? NeoFX? Transfection Agent, and the differentiation was compared to controls. Total RNA was extracted 24 and 48 h after transfection. The gene expressions of insulin, NGN3, GLUT2, PAX4, PAX6, KIR6.2, NKX6.1, PDX1, Glucagon, and OCT4 were then evaluated through real-time qPCR. On the third day, the potency of the clusters was assessed in response to high glucose levels. Dithizone (DTZ) was used to identify the existence of the β-cells. Besides, the presence of insulin and NGN3 proteins was investigated by immunocytochemistry. Morphological changes were observed on the first day after the chemical transfection, and cell clusters were formed on the third day. The expression of pancreatic specific transcription factors was increased on the first day and significantly increased on the second day. The ILCs were positive for insulin and NGN3 proteins in the immunocytochemistry. Besides, the clusters were stained with DTZ and secreted insulin in glucose challenge test. Overexpression of miR-186 and miR-375 can be an alternative strategy for producing ILCs from the iPS cells in a short time. This work provides a new approach by using patient-specific iPSCs for β-cell replacement therapy in diabetic patients.
机译:糖尿病的特征在于不能产生胰岛素或对人体分泌的胰岛素不敏感。胰岛细胞替代是治疗糖尿病的有效方法。然而,对于所有糖尿病患者来说这还不够。微小RNA(miRNA)是一类小的非编码RNA,在介导广泛且扩展的生物学活动(例如胰腺发育)中起着重要作用。本研究旨在开发一种协议,通过使用miR-186和miR-375在体外有效地将人诱导的多能干(iPS)细胞分化为胰岛样细胞簇(ILC)。通过使用siPORT ?,将人iPS菌落转染hsa-miR-186和hsa-miR-375。 NeoFX?转染剂,并将分化与对照进行比较。转染后24和48小时提取总RNA。然后通过实时qPCR评估胰岛素,NGN3,GLUT2,PAX4,PAX6,KIR6.2,NKX6.1,PDX1,胰高血糖素和OCT4的基因表达。在第三天,评估簇的效力以响应高葡萄糖水平。使用双硫((DTZ)来识别β细胞的存在。此外,通过免疫细胞化学研究了胰岛素和NGN3蛋白的存在。化学转染后第一天观察到形态变化,第三天形成细胞簇。胰腺特异性转录因子的表达在第一天增加,第二天显着增加。在免疫细胞化学中,ILC对胰岛素和NGN3蛋白呈阳性。此外,在葡萄糖激发试验中,将簇用DTZ染色并分泌胰岛素。 miR-186和miR-375的过度表达可能是在短时间内从iPS细胞生产ILC的另一种策略。这项工作通过使用患者特异性iPSC来为糖尿病患者的β细胞替代疗法提供了一种新方法。

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