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Generation and selection of pluripotent stem cells for robust differentiation to insulin-secreting cells capable of reversing diabetes in rodents

机译:多能干细胞的产生和选择,以稳定地分化为能够逆转啮齿动物糖尿病的胰岛素分泌细胞

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摘要

Induced pluripotent stem cell (iPSC) technology enables the creation and selection of pluripotent cells with specific genetic traits. This report describes a pluripotent cell line created specifically to form replacement pancreatic cells as a therapy for insulin-dependent diabetes. Beginning with primary pancreatic tissue acquired through organ donation, cells were isolated, re-programmed using non-integrating vectors and exposed to a four day differentiation protocol to generate definitive endoderm, a developmental precursor to pancreas. The best performing iPSC lines were then subjected to a 12-day basic differentiation protocol to generate endocrine pancreas precursors. The line that most consistently generated highly pure populations was selected for further development. This approach created an iPSC-variant cell line, SR1423, with a genetic profile correlated with preferential differentiation toward endodermal lineage at the loss of mesodermal potential. This report further describes an improved differentiation protocol that, coupled with SR1423, generated populations of greater than 60% insulin-expressing cells that secrete insulin in response to glucose and are capable of reversing diabetes in rodents. Created and banked following cGMP guidelines, SR1423 is a candidate cell line for the production of insulin-producing cells useful for the treatment of diabetes.
机译:诱导性多能干细胞(iPSC)技术可以创建和选择具有特定遗传特征的多能细胞。该报告描述了专为形成替代胰腺细胞而创建的多能细胞系,作为胰岛素依赖型糖尿病的治疗方法。从通过器官捐赠获得的主要胰腺组织开始,分离细胞,使用非整合型载体对其进行重新编程,然后将其暴露于四天的分化方案中以产生定形内胚层,这是胰腺的发育前体。然后对表现最佳的iPSC品系进行12天的基本分化方案,以生成内分泌胰腺前体。选择最一致地产生高纯度种群的品系进行进一步开发。这种方法创建了一个iPSC变异细胞系SR1423,其遗传特征与中胚层潜能丧失时向内胚层谱系的优先分化相关。该报告进一步描述了一种改进的分化方案,该方案与SR1423结合,可产生大于60%的胰岛素表达细胞群,这些细胞分泌葡萄糖以响应葡萄糖并能够在啮齿动物中逆转糖尿病。 SR1423是按照cGMP准则创建和存储的,是用于生产可用于治疗糖尿病的胰岛素产生细胞的候选细胞系。

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