Corning Life Sciences Development, Corning Incorporated, Corning, New York, USA.
PLoS One. 2013 Aug 5;8(8):e70263. doi: 10.1371/journal.pone.0070263. Print 2013.
Human mesenchymal stem cells (HMSCS) possess three properties of great interest for the development of cell therapies and tissue engineering: multilineage differentiation, immunomodulation, and production of trophic factors. Efficient ex vivo expansion of hMSCs is a challenging requirement for large scale production of clinical grade cells. Low-cost, robust, scalable culture methods using chemically defined materials need to be developed to address this need. This study describes the use of a xeno-free synthetic peptide acrylate surface, the Corning® Synthemax® Surface, for culture of hMSCs in serum-free, defined medium. Cell performance on the Corning Synthemax Surface was compared to cells cultured on biological extracellular matrix (ECM) coatings in xeno-free defined medium and in traditional conditions on tissue culture treated (TCT) plastic in fetal bovine serum (FBS) supplemented medium. Our results show successful maintenance of hMSCs on Corning Synthemax Surface for eight passages, with cell expansion rate comparable to cells cultured on ECM and significantly higher than for cells in TCT/FBS condition. Importantly, on the Corning Synthemax Surface, cells maintained elongated, spindle-like morphology, typical hMSC marker profile and in vitro multilineage differentiation potential. We believe the Corning Synthemax Surface, in combination with defined media, provides a complete synthetic, xeno-free, cell culture system for scalable production of hMSCs.
人骨髓间充质干细胞(hMSCs)具有三个特性,使其成为细胞治疗和组织工程发展的热点:多能分化、免疫调节和产生营养因子。高效的体外扩增是大规模生产临床级细胞的挑战性要求。需要开发低成本、稳健、可扩展的培养方法,使用化学定义的材料来满足这一需求。本研究描述了使用无动物来源的合成肽丙烯酸酯表面,康宁® Synthemax®表面,在无血清、定义培养基中培养 hMSCs。在康宁 Synthemax 表面上的细胞性能与在无动物来源的定义培养基中培养的细胞以及在传统条件下在胎牛血清(FBS)补充培养基中的组织培养处理(TCT)塑料上培养的细胞进行了比较。我们的结果表明,hMSCs 在 Corning Synthemax 表面上成功维持了 8 个传代,细胞扩增率与 ECM 培养的细胞相当,明显高于 TCT/FBS 条件下的细胞。重要的是,在 Corning Synthemax 表面上,细胞保持伸长的、纺锤形的形态,具有典型的 hMSC 标记特征和体外多能分化潜能。我们相信,康宁 Synthemax 表面与定义培养基相结合,为 hMSCs 的可扩展生产提供了一个完整的、无动物来源的、合成细胞培养系统。