CHA Advanced Research Institute, CHA University Bundang Medical Center, Seongnam 13488, Gyeonggi, Korea.
Department of Biomedical Science, CHA University, Seongnam 13488, Gyeonggi, Korea.
Int J Mol Sci. 2021 Aug 26;22(17):9238. doi: 10.3390/ijms22179238.
Pluripotent stem cell-derived mesenchymal progenitor cells (PSC-MPCs) are primarily derived through two main methods: three-dimensional (3D) embryoid body-platform (EB formation) and the 2D direct differentiation method. We recently established somatic cell nuclear transfer (SCNT)-PSC lines and showed their stemness. In the present study, we produced SCNT-PSC-MPCs using a novel direct differentiation method, and the characteristics, gene expression, and genetic stability of these MPCs were compared with those derived through EB formation. The recovery and purification of SCNT-PSC-Direct-MPCs were significantly accelerated compared to those of the SCNT-PSC-EB-MPCs, but both types of MPCs expressed typical surface markers and exhibited similar proliferation and differentiation potentials. Additionally, the analysis of gene expression patterns using microarrays showed very similar patterns. Moreover, array CGH analysis showed that both SCNT-PSC-Direct-MPCs and SCNT-PSC-EB-MPCs exhibited no significant differences in copy number variation (CNV) or single-nucleotide polymorphism (SNP) frequency. These results indicate that SCNT-PSC-Direct-MPCs exhibited high genetic stability even after rapid differentiation into MPCs, and the rate at which directly derived MPCs reached a sufficient number was higher than that of MPCs derived through the EB method. Therefore, we suggest that the direct method of differentiating MPCs from SCNT-PSCs can improve the efficacy of SCNT-PSCs applied to allogeneic transplantation.
多能干细胞衍生的间充质祖细胞(PSC-MPCs)主要通过两种主要方法获得:三维(3D)胚状体平台(EB 形成)和 2D 直接分化方法。我们最近建立了体细胞核移植(SCNT)-PSC 系,并证明了它们的干性。在本研究中,我们使用一种新的直接分化方法产生了 SCNT-PSC-MPCs,并比较了这些 MPCs 的特性、基因表达和遗传稳定性与通过 EB 形成获得的 MPCs 的特性、基因表达和遗传稳定性。与 SCNT-PSC-EB-MPCs 相比,SCNT-PSC-Direct-MPCs 的回收和纯化明显加快,但两种类型的 MPCs 均表达典型的表面标志物,并表现出相似的增殖和分化潜力。此外,使用微阵列进行基因表达模式分析显示出非常相似的模式。此外,阵列 CGH 分析表明,SCNT-PSC-Direct-MPCs 和 SCNT-PSC-EB-MPCs 在拷贝数变异(CNV)或单核苷酸多态性(SNP)频率方面均无显著差异。这些结果表明,SCNT-PSC-Direct-MPCs 在快速分化为 MPCs 后仍表现出高度的遗传稳定性,并且直接衍生的 MPCs 达到足够数量的速度高于通过 EB 方法获得的 MPCs。因此,我们建议从 SCNT-PSC 直接分化 MPCs 的方法可以提高 SCNT-PSC 应用于同种异体移植的疗效。