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A defined medium and substrate for expansion of human mesenchymal stromal cell progenitors that enriches for osteo- and chondrogenic precursors.

机译:用于扩增人间充质基质细胞祖细胞的确定的培养基和底物,富含骨和软骨形成前体。

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摘要

Human mesenchymal stromal cells (hMSCs) have generated significant interest due to their potential use in clinical applications. hMSCs are present at low frequency in vivo, but after isolation can be expanded considerably, generating clinically useful numbers of cells. In this study, we demonstrate the use of a defined embryonic stem cell expansion medium, mTeSR (Stem Cell Technologies), for the expansion of bone-marrow-derived hMSCs. The hMSCs grow at comparable rates, demonstrate tri-lineage differentiation potential, and show similar surface marker profiles (CD29(+), CD44(+), CD49a(+), CD73(+), CD90(+), CD105(+), CD146(+), CD166(+), CD34(-), and CD45(-)) in both the fetal bovine serum (FBS)-supplemented medium and mTeSR. However, expression of early differentiation transcription factors runt-related transcription factor 2, sex-determining region Y box 9, and peroxisome proliferator-activated receptor gamma changed significantly. Both runt-related transcription factor 2 and sex-determining region Y box 9 were upregulated, whereas peroxisome proliferator-activated receptor gamma was downregulated in mTeSR compared with FBS. Although osteogenic and chondrogenic differentiation was comparable in cells grown in mTeSR compared to FBS, adipogenic differentiation was significantly decreased in mTeSR-expanded cells, both in terms of gene expression and absolute numbers of adipocytes. The removal of the FBS from the medium and the provision of a defined medium with disclosed composition make mTeSR a superior study platform for hMSC biology in a controlled environment. Further, this provides a key step toward generating a clinical-grade medium for expansion of hMSCs for clinical applications that rely on osteo- and chondroinduction of MSCs, such as bone repair and cartilage generation.
机译:人间质基质细胞(hMSCs)由于其在临床应用中的潜在用途而引起了人们的极大兴趣。 hMSCs在体内的频率较低,但是分离后可以大大扩展,从而产生临床上有用的细胞数量。在这项研究中,我们证明了使用定义的胚胎干细胞扩增培养基mTeSR(干细胞技术)来扩增源自骨髓的hMSC。人间充质干细胞以可比的速度生长,显示出三谱系分化潜能,并显示出相似的表面标记图谱(CD29(+),CD44(+),CD49a(+),CD73(+),CD90(+),CD105(+) ,补充胎牛血清(FBS)的培养基和mTeSR中的CD146(+),CD166(+),CD34(-)和CD45(-)。但是,早期分化转录因子与矮子相关的转录因子2,性别决定区域Y box 9和过氧化物酶体增殖物激活的受体γ的表达发生了显着变化。与FBS相比,mTeSR中的矮子相关转录因子2和性别决定区域Y box 9均被上调,而过氧化物酶体增殖物激活的受体γ则被下调。尽管与FBS相比,在mTeSR中生长的细胞中成骨和软骨形成的分化相当,但是就基因表达和脂肪细胞的绝对数量而言,在mTeSR扩增的细胞中脂肪形成的分化显着降低。从培养基中除去FBS并提供具有公开组成的确定培养基,使mTeSR成为可控环境中hMSC生物学的卓越研究平台。此外,这提供了朝着生成用于扩展hMSC的临床级培养基的关键步骤,以用于依赖于MSC的骨诱导和软骨诱导的临床应用,例如骨修复和软骨生成。

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