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内皮细胞衍生的细胞外基质可改善小鼠骨髓间充质干细胞体外扩增过程中的干性丧失。

Endothelial-derived extracellular matrix ameliorate the stemness deprivation during ex vivo expansion of mouse bone marrow-derived mesenchymal stem cells.

作者信息

Lee Ming-Kang, Lin Shau-Ping, HuangFu Wei-Chun, Yang Dee-Shiuh, Liu I-Hsuan

机构信息

Department of Animal Science and Technology, National Taiwan University, Taipei, Taiwan.

Institute of Biotechnology, National Taiwan University, Taipei, Taiwan.

出版信息

PLoS One. 2017 Aug 30;12(8):e0184111. doi: 10.1371/journal.pone.0184111. eCollection 2017.

Abstract

Mesenchymal stem cells (MSCs) hold great potential in cell therapies by virtue of the regenerative effects and immunomodulatory properties, but the scarce nature of MSCs makes ex vivo expansion indispensable prior to transplantation purposes. However, potential loss of stemness ensuing culture expansion has hindered the advancements in MSCs-based treatments. In principle, stemness could be preserved by reconstructing the stem cell niche. To test whether the endothelial cells (ECs) participate in the constitution of the stem cell niche for mesenchymal stem cells (MSCs), ECs derivatives including extracellular matrix (ECM) and conditioned medium (CM) prepared from aortic endothelial cells (AECs) and Mile Sven 1 endothelial cell line (MS1) were investigated for the potential to maintain MSCs stemness. MSCs expanded on endothelial ECMs, especially on MS1-ECM, possessed a more juvenile morphology and showed delayed proliferation, when compared with untreated MSCs and MSCs on MSC-ECM and in CMs. Once induced, MS1-ECM group showed better tri-lineage differentiations indicating that MS1-ECM could better preserve MSC stemness. MSCs on MS1-ECM showed stronger immune-modulatory potential and had significantly higher H3K27me3 with lower Kdm6b expression. Taken together, MS1-ECM shapes an inhibitory chromatin signature and retains MSCs stemness. Our work provided supportive evidence that MSCs can reside in a perivascular niche, and a feasible novel approach for MSCs expansion.

摘要

间充质干细胞(MSCs)凭借其再生作用和免疫调节特性在细胞治疗中具有巨大潜力,但MSCs数量稀少,使得在移植前进行体外扩增必不可少。然而,培养扩增导致的干性潜在丧失阻碍了基于MSCs的治疗进展。原则上,可通过重建干细胞微环境来保留干性。为了测试内皮细胞(ECs)是否参与间充质干细胞(MSCs)的干细胞微环境的构成,研究了由主动脉内皮细胞(AECs)和Mile Sven 1内皮细胞系(MS1)制备的ECs衍生物,包括细胞外基质(ECM)和条件培养基(CM)维持MSCs干性的潜力。与未处理的MSCs以及在MSCs-ECM和CMs上培养的MSCs相比,在内皮ECMs上扩增的MSCs,尤其是在MS1-ECM上扩增的MSCs,具有更年轻的形态且增殖延迟。一旦诱导,MS1-ECM组显示出更好的三系分化,表明MS1-ECM能更好地保留MSCs干性。在MS1-ECM上的MSCs显示出更强的免疫调节潜力,且H3K27me3显著更高,Kdm6b表达更低。综上所述,MS1-ECM塑造了一种抑制性染色质特征并保留了MSCs干性。我们的工作提供了支持性证据,证明MSCs可存在于血管周围微环境中,并为MSCs扩增提供了一种可行的新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/998f/5576725/4c27c20b7faa/pone.0184111.g001.jpg

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