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Embryonic stem cells conditioned medium enhances Wharton’s jelly-derived mesenchymal stem cells expansion under hypoxic condition

机译:缺氧条件下胚胎干细胞条件培养液可增强沃顿氏胶冻源性间充质干细胞的扩增能力

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摘要

Mesenchymal stem cells (MSCs) are accepted as a promising tool for therapeutic purposes. However, low proliferation and early senescence are still main obstacles of MSCs expansion for using as cell-based therapy. Thus, clinical scale of cell expansion is needed to obtain a large number of cells serving for further applications. In this study, we investigated the value of embryonic stem cells conditioned medium (ESCM) for in vitro expansion of Wharton’s jelly-derived mesenchymal stem cells (WJ-MSCs) as compared to typical culture medium for MSCs, Dulbecco’s modified Eagle’s medium with 1.0 g/l glucose (DMEM-LG) supplemented with 10 % FBS, under hypoxic condition. The expanded cells from ESCM (ESCM-MSCs) and DMEM-LG (DMEM-MSCs) were characterized for both phenotype and biological activities including proliferation rate, population doubling time, cell cycle distribution and MSCs characteristics. ESCM and DMEM-LG could enhance WJ-MSCs proliferation as 204.66 ± 10.39 and 113.77 ± 7.89 fold increase at day 12, respectively. ESCM-MSCs could express pluripotency genes including Oct-4, Oct-3/4, Nanog, Klf-4, C-Myc and Sox-2 both in early and late passages whereas the downregulations of Oct-4 and Nanog were detected in late passage cells of DMEM-MSCs. The 2 cell populations also showed common MSCs characteristics including normal cell cycle, fibroblastic morphology, cell surface markers expressions (CD29+, CD44+, CD90+, CD34, CD45) and differentiation capacities into adipogenic, chondrogenic and osteogenic lineages. Moreover, our results revealed that ESCM exhibited as a rich source of several factors which are required for supportive WJ-MSCs proliferation. In conclusion, ESCM under hypoxic condition could accelerate WJ-MSCs expansion while maintaining their pluripotency properties. Our knowledge provide short term and cost-saving in WJ-MSCs expansion which has benefit to overcome insufficient cell numbers for clinical applications by reusing the discarded cell culture supernates from human ES culture system. Moreover, these findings can also apply for stem cell banking, regenerative medicine and pharmacological applications.
机译:间充质干细胞(MSCs)被认为是用于治疗目的的有前途的工具。然而,低增殖和早期衰老仍然是用作基于细胞的疗法的MSC扩增的主要障碍。因此,需要临床规模的细胞扩增以获得大量用于进一步应用的细胞。在这项研究中,我们调查了胚胎干细胞条件培养液(ESCM)对于沃顿氏胶冻源性间充质干细胞(WJ-MSC)体外扩增的价值,与MSCs的典型培养液,杜比克改良的Eagle's培养基(1.0 g)相比/ l葡萄糖(DMEM-LG)在低氧条件下补充10%FBS。对来自ESCM(ESCM-MSCs)和DMEM-LG(DMEM-MSCs)的扩增细胞进行了表型和生物学活性表征,包括增殖速率,群体倍增时间,细胞周期分布和MSCs特性。 ESCM和DMEM-LG可以增强WJ-MSC的增殖,在第12天分别增加204.66±10.39和113.77±7.89倍。 ESCM-MSCs可以在早期和晚期传代表达多能性基因,包括Oct-4,Oct-3 / 4,Nanog,Klf-4,C-Myc和Sox-2,而在后期检测到Oct-4和Nanog的下调。 DMEM-MSC的传代细胞。这2个细胞群也表现出共同的MSC特性,包括正常细胞周期,成纤维细胞形态,细胞表面标志物表达(CD29 + ,CD44 + ,CD90 + ,CD34 -,CD45 -)以及向成脂,成软骨和成骨谱系的分化能力。此外,我们的结果表明,ESCM表现出支持WJ-MSCs增殖所需的多种因素的丰富来源。总之,在缺氧条件下的ESCM可以加速WJ-MSC的扩增,同时保持其多能性。我们的知识为WJ-MSCs的扩展提供了短期且节省的成本,通过重复使用人类ES培养系统中废弃的细胞培养物,有助于克服临床应用中不足的细胞数。此外,这些发现还可用于干细胞储存,再生医学和药理学应用。

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