Ueda Mamoru, Hashimoto Yoshiya, Honda Yoshitomo, Baba Shunsuke, Morita Shosuke
First Department of Oral and Maxillofacial Surgery, Osaka Dental University, Hirakata, 5731121, Japan.
Department of Biomaterials, Osaka Dental University, Hirakata, 5731121, Japan.
Med Mol Morphol. 2019 Sep;52(3):147-155. doi: 10.1007/s00795-018-0211-1. Epub 2018 Nov 16.
Generating mesenchymal stem-like cells (MSLCs) from induced pluripotent stem cells (iPSCs) can be a practical method for obtaining the sufficient cells for autologous tissue engineering. Single-cell culturing in specific medium and non-feeder cells is an alternative and promising strategy to overcome problems of embryo culture; however, little is known about how different culture media affect the proliferation and differentiation of MSLCs. We first derived MSLCs from iPSCs with non-integrating episomal plasmid vectors (hereafter 409B2 cells) using three different cell culture media, including single-cell culture medium in feeder-free condition: mTeSR1, DEF-CS500, or StemFit AK02N. The morphology of all MSLCs was completely altered to a fibroblastic morphology after four passages. Surface antigens CD29, CD44, CD73, CD90, but not CD34 and CD45, were expressed in all passages. RUNX2 was expressed in MSLCs cultured in all three feeder-free media, while SOX9 and PPARγ were expressed in MSLCs cultured in only DEF-CS500. MSLCs derived from DEF-CS500, which is a single-cell culture medium, grew at a slightly faster rate than those cultured in other media and expressed early-stage genes for tri-lineage differentiation. Taken together, these findings provide valuable information for generating MSLCs using single-cell culture methods.
从诱导多能干细胞(iPSC)生成间充质干细胞样细胞(MSLC)可能是一种为自体组织工程获取足够细胞的实用方法。在特定培养基和无饲养层细胞条件下进行单细胞培养是克服胚胎培养问题的一种有前景的替代策略;然而,关于不同培养基如何影响MSLC的增殖和分化,我们所知甚少。我们首先使用三种不同的细胞培养基,包括无饲养层条件下的单细胞培养基:mTeSR1、DEF-CS500或StemFit AK02N,从携带非整合附加体质粒载体的iPSC(以下简称409B2细胞)中获得MSLC。传代四次后,所有MSLC的形态完全转变为成纤维细胞形态。所有传代细胞均表达表面抗原CD29、CD44、CD73、CD90,但不表达CD34和CD45。RUNX2在所有三种无饲养层培养基中培养的MSLC中均有表达,而SOX9和PPARγ仅在DEF-CS500中培养的MSLC中表达。来自单细胞培养基DEF-CS500的MSLC生长速度略快于在其他培养基中培养的MSLC,并表达三系分化的早期基因。综上所述,这些发现为使用单细胞培养方法生成MSLC提供了有价值的信息。