Department of Veterinary Internal Medicine, College of Veterinary Medicine, Seoul National University, Seoul, Republic of Korea.
Department of Theriogenology and Biotechnology, College of Veterinary Medicine, Seoul National University, Seoul, Republic of Korea.
Exp Mol Med. 2014 Jun 20;46(6):e101. doi: 10.1038/emm.2014.28.
Mesenchymal stem cells (MSCs) are attractive candidates for clinical repair or regeneration of damaged tissues. Oct4 and Sox2, which are essential transcription factors for pluripotency and self-renewal, are naturally expressed in MSCs at low levels in early passages, and their levels gradually decrease as the passage number increases. Therefore, to improve MSC proliferation and stemness, we introduced human Oct4 and Sox2 for conferring higher expansion and differentiation capabilities. The Oct4-IRES-Sox2 vector was transfected into human adipose tissue MSCs (ATMSCs) by liposomal transfection and used directly. Oct4 and Sox2 were successfully transfected into ATMSCs, and we confirmed maintenance of MSC surface markers without alterations in both red fluorescent protein (RFP) (control) and Oct4/Sox2-ATMSCs. Enhanced proliferative activity of Oct4/Sox2-ATMSCs was shown by WST-1 assay, and this result was further confirmed by cell counting using trypan blue exclusion for a long period. In addition, FACs cell cycle analysis showed that there was a reduction in the fraction of Oct4/Sox2-ATMSCs in G1 with a concomitant increase in the fraction of cells in S, compared with RFP-ATMSCs. Increased levels of cyclin D1 were also seen in Oct4/Sox2-ATMSCs, indicating acceleration in the transition of cells from G1 to S phase. Furthermore, Oct4/Sox2-overexpressing ATMSCs showed higher differentiation abilities for adipocytes or osteoblasts than controls. The markers of adipogenic or osteogenic differentiation were also upregulated by Oct4/Sox2 overexpression. The improvement in cell proliferation and differentiation using Oct4/Sox2 expression in ATMSCs may be a useful method for expanding the population and increasing the stemness of ATMSCs.
间充质干细胞(MSCs)是临床修复或再生受损组织的有吸引力的候选者。Oct4 和 Sox2 是多能性和自我更新的必需转录因子,在早期传代的 MSCs 中低水平自然表达,随着传代数的增加,其水平逐渐降低。因此,为了提高 MSC 的增殖和干性,我们引入了人类 Oct4 和 Sox2,以赋予更高的扩增和分化能力。Oct4-IRES-Sox2 载体通过脂质体转染转染到人脂肪组织 MSC(ATMSCs)中并直接使用。Oct4 和 Sox2 成功转染到 ATMSCs 中,我们确认 MSC 表面标志物的维持没有改变,无论是红色荧光蛋白(RFP)(对照)还是 Oct4/Sox2-ATMSCs。通过 WST-1 测定法显示 Oct4/Sox2-ATMSCs 的增殖活性增强,并且通过使用台盼蓝排除法长时间进行细胞计数进一步证实了这一结果。此外,FACs 细胞周期分析表明,与 RFP-ATMSCs 相比,Oct4/Sox2-ATMSCs 中 G1 期的细胞分数减少,S 期的细胞分数增加。还观察到 Oct4/Sox2-ATMSCs 中环素 D1 的水平升高,表明细胞从 G1 期向 S 期的过渡加速。此外,Oct4/Sox2 过表达的 ATMSCs 显示出比对照更高的向脂肪细胞或成骨细胞分化的能力。脂肪细胞或成骨细胞分化的标志物也通过 Oct4/Sox2 过表达而上调。在 ATMSCs 中使用 Oct4/Sox2 表达提高细胞增殖和分化的能力可能是扩大细胞群体和增加 ATMSCs 干性的有用方法。