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Differentiation and Transplantation of Functional Pancreatic Beta Cells Generated from Induced Pluripotent Stem Cells Derived from a Type 1 Diabetes Mouse Model

机译:从1型糖尿病小鼠模型衍生的诱导多能干细胞中产生的功能性胰腺β细胞的分化和移植。

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摘要

The nonobese diabetic (NOD) mouse is a classical animal model for autoimmune type 1 diabetes (T1D), closely mimicking features of human T1D. Thus, the NOD mouse presents an opportunity to test the effectiveness of induced pluripotent stem cells (iPSCs) as a therapeutic modality for T1D. Here, we demonstrate a proof of concept for cellular therapy using NOD mouse-derived iPSCs (NOD-iPSCs). We generated iPSCs from NOD mouse embryonic fibroblasts or NOD mouse pancreas-derived epithelial cells (NPEs), and applied directed differentiation protocols to differentiate the NOD-iPSCs toward functional pancreatic beta cells. Finally, we investigated whether the NPE-iPSC-derived insulin-producing cells could normalize hyperglycemia in transplanted diabetic mice. The NOD-iPSCs showed typical embryonic stem cell-like characteristics such as expression of markers for pluripotency, in vitro differentiation, teratoma formation, and generation of chimeric mice. We developed a method for stepwise differentiation of NOD-iPSCs into insulin-producing cells, and found that NPE-iPSCs differentiate more readily into insulin-producing cells. The differentiated NPE-iPSCs expressed diverse pancreatic beta cell markers and released insulin in response to glucose and KCl stimulation. Transplantation of the differentiated NPE-iPSCs into diabetic mice resulted in kidney engraftment. The engrafted cells responded to glucose by secreting insulin, thereby normalizing blood glucose levels. We propose that NOD-iPSCs will provide a useful tool for investigating genetic susceptibility to autoimmune diseases and generating a cellular interaction model of T1D, paving the way for the potential application of patient-derived iPSCs in autologous beta cell transplantation for treating diabetes.
机译:非肥胖糖尿病(NOD)小鼠是自身免疫性1型糖尿病(T1D)的经典动物模型,与人类T1D的特征极为相似。因此,NOD小鼠提供了一个机会来测试诱导性多能干细胞(iPSC)作为T1D的治疗方式的有效性。在这里,我们演示了使用NOD小鼠衍生的iPSC(NOD-iPSC)进行细胞治疗的概念验证。我们从NOD小鼠胚胎成纤维细胞或NOD小鼠胰腺来源的上皮细胞(NPE)生成了iPSC,并应用定向分化方案将NOD-iPSC分化为功能性胰腺β细胞。最后,我们调查了NPE-iPSC衍生的胰岛素产生细胞是否可以使移植的糖尿病小鼠的高血糖正常化。 NOD-iPSCs具有典型的胚胎干细胞样特征,例如多能性标记的表达,体外分化,畸胎瘤形成和嵌合小鼠的产生。我们开发了一种将NOD-iPSCs逐步分化为产生胰岛素的细胞的方法,并且发现NPE-iPSCs更容易分化为产生胰岛素的细胞。分化的NPE-iPSCs表达多种胰腺β细胞标志物,并响应葡萄糖和氯化钾刺激释放胰岛素。将分化的NPE-iPSCs移植到糖尿病小鼠中导致肾移植。植入的细胞通过分泌胰岛素对葡萄糖作出反应,从而使血糖水平正常化。我们认为,NOD-iPSCs将为研究自身免疫性疾病的遗传易感性并生成T1D的细胞相互作用模型提供有用的工具,为患者衍生的iPSCs在自体β细胞移植治疗糖尿病中的潜在应用铺平了道路。

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