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Generation of Mesenchymal Stem Cells from Human Embryonic Stem Cells in a Complete Serum-free Condition

机译:在完全无血清的条件下从人胚胎干细胞生成间充质干细胞

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Mesenchymal stem cells (MSC) have been derived from a variety of tissues, and cultured either in animal serum-containing (SC) or serum-free (SF) media. We have previously derived MSC from human embryonic stem cells via an intermediate trophoblast step (named EMSC), which also have immunosuppressive and therapeutic effects on animal models of autoimmune disease. To promote the clinical application of this new source of MSC, we report here EMSC derived and cultured in a SF medium MesenCult (SF-EMSC) in comparison with a SC medium (SC-EMSC). SF-EMSC derived in MesenCult also expressed typical MSC markers CD73, CD90, and CD105, and manifested multipotency to differentiate to osteocytes, chondrocytes, and adipocytes. Comparably, CD105+ cells reached 90% about one week slower in the SF than SC conditions, and the proliferation rate was slightly faster for SF-EMSC than SC-EMSC at later passages. Both SF- and SC-EMSC responded similarly to the inflammatory stimulus IFNγ. However, the inflammatory cytokines IL-6 and IL-8 were expressed much less in SF-EMSC than SC-EMSC. Furthermore, knockdown of P16INK4A in both SF- and SC-EMSC reduced replicative senescence. Together, our results suggest that EMSC can be generated in a complete SF condition, and SF-EMSC are largely similar to SC-EMSC. However, it takes longer time to derive EMSC in the SF than SC conditions, and the SF-EMSC proliferate faster at later passages and produce less of the inflammatory cytokines IL-6 and IL-8 than SC-EMSC. This study provides important information for production of clinically applicable EMSC.
机译:间充质干细胞(MSC)已衍生自多种组织,并在含动物血清(SC)或无血清(SF)的培养基中培养。我们先前通过中间滋养层步骤(称为EMSC)从人胚胎干细胞中获得了MSC,该步骤对自身免疫性疾病的动物模型也具有免疫抑制和治疗作用。为了促进这种新来源的MSC的临床应用,我们在这里报告与MSC培养基(SC-EMSC)相比,在SF培养基MesenCult(SF-EMSC)中衍生和培养的EMSC。源自MesenCult的SF-EMSC还表达了典型的MSC标记CD73,CD90和CD105,并表现出能分化为骨细胞,软骨细胞和脂肪细胞的多能性。相比之下,CD105 +细胞在SF中比SC条件下慢90%约一个星期,并且在随后的传代中,SF-EMSC的增殖速率比SC-EMSC稍快。 SF-和SC-EMSC对炎症刺激IFNγ的反应相似。然而,与SC-EMSC相比,SF-EMSC中炎性细胞因子IL-6和IL-8的表达要少得多。此外,在SF-和SC-EMSC中P16INK4A的敲低减少了复制衰老。总之,我们的结果表明,可以在完整的SF条件下生成EMSC,并且SF-EMSC在很大程度上类似于SC-EMSC。但是,在SF中获得EMSC的时间要比在SC条件下长,并且SF-EMSC在随后的传代中增殖更快,并且产生的炎性细胞因子IL-6和IL-8比SC-EMSC少。这项研究为生产可临床应用的EMSC提供了重要信息。

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