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首页> 外文期刊>PLoS Computational Biology >Interspecies chimeric conditions affect the developmental rate of human pluripotent stem cells
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Interspecies chimeric conditions affect the developmental rate of human pluripotent stem cells

机译:间隙嵌合条件影响人多能干细胞的发育率

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Human pluripotent stem cells hold significant promise for regenerative medicine. However, long differentiation protocols and immature characteristics of stem cell-derived cell types remain challenges to the development of many therapeutic applications. In contrast to the slow differentiation of human stem cells in vitro that mirrors a nine-month gestation period, mouse stem cells develop according to a much faster three-week gestation timeline. Here, we tested if co-differentiation with mouse pluripotent stem cells could accelerate the differentiation speed of human embryonic stem cells. Following a six-week RNA-sequencing time course of neural differentiation, we identified 929 human genes that were upregulated earlier and 535 genes that exhibited earlier peaked expression profiles in chimeric cell cultures than in human cell cultures alone. Genes with accelerated upregulation were significantly enriched in Gene Ontology terms associated with neurogenesis, neuron differentiation and maturation, and synapse signaling. Moreover, chimeric mixed samples correlated with in utero human embryonic samples earlier than human cells alone, and acceleration was dose-dependent on humanmouse co-culture ratios. The altered gene expression patterns and developmental rates described in this report have implications for accelerating human stem cell differentiation and the use of interspecies chimeric embryos in developing human organs for transplantation.
机译:人类多能干细胞对再生医学具有重要的承诺。然而,干细胞衍生细胞类型的长分化协议和干细胞源细胞类型的不成熟特征仍然是对许多治疗应用的发展的挑战。与体外人干细胞的缓慢分化相比,反映了九个月妊娠期的妊娠期,小鼠干细胞根据三周的妊娠时间表更快地发展。这里,我们测试了与小鼠多能干细胞的共分化可以加速人胚胎干细胞的分化速度。在神经分化的六周测序时间过程之后,我们鉴定了929个以前上调的人基因,并且在嵌合细胞培养物中表现出早期峰值表达谱的535个基因而不是单独的人细胞培养物。具有加速上调的基因在与神经发生,神经元分化和成熟和突触信号相关的基因本体论术语中显着富集。此外,嵌合的混合样品与单独的人体细胞早期与子宫胚胎样品相关,并且加速剂量取决于人官官僚共培养比。本报告中描述的改变的基因表达模式和发育速率对加速人的干细胞分化并在开发移植的人器官中使用嵌合嵌合胚胎的使用。

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