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Human immune system development and rejection of human islet allografts in spontaneously diabetic NOD-Rag1null IL2rgammanull Ins2Akita mice

机译:自发性糖尿病NOD-Rag1null IL2rgammanull Ins2akita小鼠人体免疫系统发育和人胰岛移植排斥反应

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摘要

OBJECTIVE: To create an immunodeficient mouse model that spontaneously develops hyperglycemia to serve as a diabetic host for human islets and stem cell-derived beta-cells in the absence or presence of a functional human immune system.RESEARCH DESIGN AND METHODS: We backcrossed the Ins2(Akita) mutation onto the NOD-Rag1(null) IL2rgamma(null) strain and determined 1) the spontaneous development of hyperglycemia, 2) the ability of human islets, mouse islets, and dissociated mouse islet cells to restore euglycemia, 3) the generation of a human immune system following engraftment of human hematopoietic stem cells, and 4) the ability of the humanized mice to reject human islet allografts.RESULTS: We confirmed the defects in innate and adaptive immunity and the spontaneous development of hyperglycemia conferred by the IL2rgamma(null), Rag1(null), and Ins2(Akita) genes in NOD-Rag1(null) IL2rgamma(null) Ins2(Akita) (NRG-Akita) mice. Mouse and human islets restored NRG-Akita mice to normoglycemia. Insulin-positive cells in dissociated mouse islets, required to restore euglycemia in chemically diabetic NOD-scid IL2rgamma(null) and spontaneously diabetic NRG-Akita mice, were quantified following transplantation via the intrapancreatic and subrenal routes. Engraftment of human hematopoietic stem cells in newborn NRG-Akita and NRG mice resulted in equivalent human immune system development in a normoglycemic or chronically hyperglycemic environment, with \u3e50% of engrafted NRG-Akita mice capable of rejecting human islet allografts.CONCLUSIONS: NRG-Akita mice provide a model system for validation of the function of human islets and human adult stem cell, embryonic stem cell, or induced pluripotent stem cell-derived beta-cells in the absence or presence of an alloreactive human immune system.
机译:目的:建立一种免疫缺陷的小鼠模型,该模型在缺乏或存在功能性人体免疫系统的情况下,自发发展为高血糖症,以作为人类胰岛和干细胞衍生的β细胞的糖尿病宿主。研究设计和方法:我们对Ins2进行了回交(Akita)突变至NOD-Rag1(null)IL2rgamma(null)菌株并确定1)高血糖的自发发展,2)人胰岛,小鼠胰岛和游离的小鼠胰岛细胞恢复正常血糖的能力,3)植入人类造血干细胞后产生的人类免疫系统,以及4)人源化小鼠排斥人类胰岛同种异体移植物的能力。结果:我们证实了IL2rgamma所固有的先天性和适应性免疫缺陷以及高血糖的自发发展(null),Rag1(null)和Ins2(Akita)基因在NOD-Rag1(null)IL2rgamma(null)Ins2(Akita)(NRG-Akita)小鼠中。小鼠和人类胰岛使NRG-Akita小鼠恢复至血糖正常。通过胰腺内和肾下途径移植后,对分离的小鼠胰岛中的胰岛素阳性细胞进行了定量,以恢复化学性糖尿病NOD-scid IL2rgamma(null)和自发性糖尿病NRG-Akita小鼠的正常血糖。结论:NRG-NRG-Akita和NRG小鼠在正常血糖或长期高血糖的环境中移植了人类造血干细胞,导致同等的人类免疫系统发育。秋田鼠提供了一个模型系统,用于在缺乏或存在同种反应性人类免疫系统的情况下验证人类胰岛和人类成年干细胞,胚胎干细胞或诱导的多能干细胞衍生的β细胞的功能。

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