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首页> 外文期刊>Stem cells translational medicine. >Insulin-Producing Endocrine Cells Differentiated In Vitro From Human Embryonic Stem Cells Function in Macroencapsulation Devices In Vivo
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Insulin-Producing Endocrine Cells Differentiated In Vitro From Human Embryonic Stem Cells Function in Macroencapsulation Devices In Vivo

机译:在人体内的大包囊装置中,与人胚胎干细胞功能不同的胰岛素生产内分泌细胞

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摘要

The PEC-01 cell population, differentiated from human embryonic stem cells (hESCs), contains pancreatic progenitors (PPs) that, when loaded into macroencapsulation devices (to produce the VC-01 candidate product) and transplanted into mice, can mature into glucose-responsive insulin-secreting cells and other pancreatic endocrine cells involved in glucose metabolism. We modified the protocol for making PEC-01 cells such that 73%-80% of the cell population consisted of PDX1-positive (PDX1(+)) and NKX6.1(+) PPs. The PPs were further differentiated to islet-like cells (ICs) that reproducibly contained 73%-89% endocrine cells, of which approximately 40%-50% expressed insulin. A large fraction of these insulin-positive cells were single hormone-positive and expressed the transcription factors PDX1 and NKX6.1. To preclude a significant contribution of progenitors to the in vivo function of ICs, we used a simple enrichment process to remove remaining PPs, yielding aggregates that contained 93%-98% endocrine cells and 1%-3% progenitors. Enriched ICs, when encapsulated and implanted into mice, functioned similarly to the VC-01 candidate product, demonstrating conclusively that in vitro-produced hESC-derived insulin-producing cells can mature and function in vivo in devices. A scaled version of our suspension culture was used, and the endocrine aggregates could be cryo-preserved and retain functionality. Although ICs expressed multiple important (3 cell genes, the cells contained relatively low levels of several maturity-associated markers. Correlating with this, the time to function of ICs was similar to PEC-01 cells, indicating that ICs required cell-autonomous maturation after delivery in vivo, which would occur concurrently with graft integration into the host. STEM CELLS TRANSLATIONAL MEDICINE 2015;4:1214-1222
机译:从人类胚胎干细胞(hESCs)分化而来的PEC-01细胞群体中,含有胰腺祖细胞(PPs),将其装入巨囊化装置(以生产VC-01候选产品)并移植到小鼠中后,可以成熟为葡萄糖-反应性胰岛素分泌细胞和其他参与葡萄糖代谢的胰腺内分泌细胞。我们修改了用于制造PEC-01细胞的协议,以使73%-80%的细胞群体由PDX1阳性(PDX1(+))和NKX6.1(+)PP组成。 PP进一步分化为胰岛样细胞(ICs),可重复地包含73%-89%的内分泌细胞,其中约40%-50%的胰岛素表达。这些胰岛素阳性细胞中很大一部分是单激素阳性,并表达了转录因子PDX1和NKX6.1。为了排除祖细胞对IC的体内功能的重大贡献,我们使用了一种简单的富集工艺来去除残留的PP,从而产生了包含93%-98%内分泌细胞和1%-3%祖细胞的聚集体。富集的IC封装并植入小鼠后,其功能类似于VC-01候选产品,最终证明了体外产生的hESC衍生的胰岛素产生细胞可以在装置中成熟并在体内发挥作用。使用了我们悬浮培养的缩放版本,可以将内分泌聚集物冷冻保存并保留功能。尽管ICs表达了多个重要的(3个细胞基因)细胞,但其中包含几个成熟相关标记的水平相对较低。与此相关的是,ICs的作用时间类似于PEC-01细胞,这表明ICs需要在细胞自主成熟后才能成熟。体内进行分娩,这将与移植物整合入宿主同时发生。干细胞翻译医学2015; 4:1214-1222

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