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通过胎儿间充质干细胞细胞外基质增强成人间充质干细胞的体外扩增。

Enhanced ex vivo expansion of adult mesenchymal stem cells by fetal mesenchymal stem cell ECM.

机构信息

BioSystems and Micromechanics Interdisciplinary Group, Singapore-MIT Alliance for Research and Technology, 1 CREATE Way, Singapore 138602, Singapore.

BioSystems and Micromechanics Interdisciplinary Group, Singapore-MIT Alliance for Research and Technology, 1 CREATE Way, Singapore 138602, Singapore.

出版信息

Biomaterials. 2014 Apr;35(13):4046-57. doi: 10.1016/j.biomaterials.2014.01.081. Epub 2014 Feb 21.

Abstract

Large-scale expansion of highly functional adult human mesenchymal stem cells (aMSCs) remains technologically challenging as aMSCs lose self renewal capacity and multipotency during traditional long-term culture and their quality/quantity declines with donor age and disease. Identification of culture conditions enabling prolonged expansion and rejuvenation would have dramatic impact in regenerative medicine. aMSC-derived decellularized extracellular matrix (ECM) has been shown to provide such microenvironment which promotes MSC self renewal and "stemness". Since previous studies have demonstrated superior proliferation and osteogenic potential of human fetal MSCs (fMSCs), we hypothesize that their ECM may promote expansion of clinically relevant aMSCs. We demonstrated that aMSCs were more proliferative (∼ 1.6 ×) on fMSC-derived ECM than aMSC-derived ECMs and traditional tissue culture wares (TCPS). These aMSCs were smaller and more uniform in size (median ± interquartile range: 15.5 ± 4.1 μm versus 17.2 ± 5.0 μm and 15.5 ± 4.1 μm for aMSC ECM and TCPS respectively), exhibited the necessary biomarker signatures, and stained positive for osteogenic, adipogenic and chondrogenic expressions; indications that they maintained multipotency during culture. Furthermore, fMSC ECM improved the proliferation (∼ 2.2 ×), size (19.6 ± 11.9 μm vs 30.2 ± 14.5 μm) and differentiation potential in late-passaged aMSCs compared to TCPS. In conclusion, we have established fMSC ECM as a promising cell culture platform for ex vivo expansion of aMSCs.

摘要

大规模扩增功能强大的成人间充质干细胞(aMSCs)在技术上仍然具有挑战性,因为 aMSCs 在传统的长期培养过程中会失去自我更新能力和多能性,并且随着供体年龄和疾病的增加,其质量/数量会下降。确定能够实现长期扩增和再生的培养条件将对再生医学产生巨大影响。aMSC 来源的去细胞细胞外基质(ECM)已被证明能够提供促进 MSC 自我更新和“干性”的微环境。由于先前的研究已经证明了人类胎儿间充质干细胞(fMSCs)具有优越的增殖和成骨潜能,我们假设它们的 ECM 可能促进临床上相关的 aMSCs 的扩增。我们证明,与 aMSC 衍生的 ECM 和传统的组织培养器皿(TCPS)相比,aMSCs 在 fMSC 衍生的 ECM 上的增殖能力更强(约 1.6 倍)。这些 aMSCs 体积更小且大小更均匀(中位数±四分位距:15.5±4.1μm 对 17.2±5.0μm 和 15.5±4.1μm 分别为 aMSC ECM 和 TCPS),表现出必要的生物标志物特征,并对成骨、成脂和成软骨表达呈阳性,表明它们在培养过程中保持了多能性。此外,与 TCPS 相比,fMSC ECM 提高了晚期传代 aMSCs 的增殖(约 2.2 倍)、大小(19.6±11.9μm 对 30.2±14.5μm)和分化潜能。总之,我们已经建立了 fMSC ECM 作为体外扩增 aMSCs 的有前途的细胞培养平台。

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