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首页> 外文期刊>Stem cells and development >Conserved Role of bFGF and a Divergent Role of LIF for Pluripotency Maintenance and Survival in Canine Pluripotent Stem Cells
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Conserved Role of bFGF and a Divergent Role of LIF for Pluripotency Maintenance and Survival in Canine Pluripotent Stem Cells

机译:bFGF的保守作用和LIF在犬多能干细胞多能维持和存活中的不同作用

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摘要

Dogs have been widely used as a preclinical model for human disease. With the successful generation of canine induced pluripotent stem cells (ciPSCs), the biomedical community has a unique opportunity to study therapeutic interventions using autologous stem cells that can benefit dogs and humans. Unlike mice and human pluripotent cells, which are leukemia inhibitory factor (LIF)- and basic fibroblast growth factor (bFGF)-dependent, respectively, dog iPSCs require both growth factors simultaneously. In an effort to elucidate the role of each factor in the control of ciPSC self-renewal, we performed a series of experiments aiming at understanding the signaling pathways activated by them. We found that bFGF regulates pluripotency by indirectly activating the SMAD2/3 pathway in the presence of feeder cells, exclusively targeting NANOG expression, and inhibiting spontaneous differentiation toward ectoderm and mesoderm. LIF activates the JAK-STAT3 pathway but does not function in the typical manner described in mouse naive embryonic stem cells. These results show that a unique mechanism for maintenance of pluripotency is present in ciPSC. These findings should be taken into account when establishing stem cell differentiation protocols and may provide more insight into pluripotency regulation in species other than mice and humans.
机译:狗已被广泛用作人类疾病的临床前模型。随着犬类诱导多能干细胞(ciPSC)的成功产生,生物医学界有一个独特的机会来研究使用对狗和人有益的自体干细胞进行的治疗性干预。不同于小鼠和人类多能细胞,它们分别是白血病抑制因子(LIF)和碱性成纤维细胞生长因子(bFGF)依赖性的,狗iPSC同时需要两种生长因子。为了阐明每个因素在控制ciPSC自我更新中的作用,我们进行了一系列旨在了解由其激活的信号通路的实验。我们发现,bFGF通过在存在饲养细胞的情况下间接激活SMAD2 / 3途径来调节多能性,该途径仅靶向NANOG表达,并抑制自发分化为外胚层和中胚层。 LIF激活JAK-STAT3途径,但不能以小鼠幼稚胚胎干细胞中描述的典型方式起作用。这些结果表明,ciPSC中存在维持多能性的独特机制。建立干细胞分化方案时应考虑这些发现,并可能为小鼠和人类以外物种的多能性调节提供更多见识。

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