Lee Jeong-Hyeon, Lee Won-Jae, Jeon Ryoung-Hoon, Lee Yeon-Mi, Jang Si-Jung, Lee Sung-Lim, Jeon Byung-Geun, Ock Sun-A, King W Allen, Rho Gyu-Jin
1 Theriogenology and Biotechnology, College of Veterinary Medicine, Gyeongsang National University , Jinju, 660-701, Republic of Korea.
Cell Reprogram. 2014 Dec;16(6):428-38. doi: 10.1089/cell.2014.0036.
The present study compared the potential of porcine bone marrow mesenchymal stem cells (pBMSCs) at different passages as nuclear transfer (NT) donors and the developmental efficiency of NT embryos from donor cells transfected with/without Oct4 and Sox2. Early-passage pBMSCs showed higher proliferation and expression of Oct4 and Sox2 and differentiation potential into mesenchymal lineages than middle- and late-passage pBMSCs. Cleavage rate did not differ among pBMSCs at different passages, but NT embryos with early-passage pBMSCs and middle-passage pBMSCs transfected with Oct4 (Oct4-pBMSCs) had significantly (p<0.05) higher blastocyst development than those with middle-passage pBMSCs. The incidence of apoptotic bodies in NT blastocysts from late-passage pBMSCs and Sox2-transfected middle-passage pBMSCs (Sox2-pBMSCs) was significantly (p<0.05) higher than others. The transcriptional levels of Oct4, Sox2, Nanog, Cdx2, Dnmt3a, and Igf2r genes were significantly (p<0.05) higher in Oct4- and Sox2-pBMSCs NT embryos. Middle-passage pBMSCs NT embryos revealed lower transcriptional levels of Bcl2 than others, except Sox2-pBMSCs NT embryos. The transcriptional level of Bax increased gradually in NT embryos derived from pBMSCs following extended passages and was significantly (p<0.05) higher in Sox2-pBMSCs NT embryos. Our results demonstrated that early-passage pBMSCs are more potent in expressing transcription factors and displayed higher differentiation ability, and middle-passage pBMSCs transfected with Oct4 improved the developmental efficiency of NT embryos, suggesting that high Oct4 expression cells are more efficient as NT donors.
本研究比较了不同传代的猪骨髓间充质干细胞(pBMSCs)作为核移植(NT)供体的潜力以及经Oct4和Sox2转染/未转染的供体细胞所产生的NT胚胎的发育效率。与中晚期传代的pBMSCs相比,早期传代的pBMSCs显示出更高的增殖能力、Oct4和Sox2表达以及向间充质谱系的分化潜能。不同传代的pBMSCs之间的卵裂率没有差异,但早期传代的pBMSCs和转染了Oct4的中期传代pBMSCs(Oct4-pBMSCs)所产生的NT胚胎的囊胚发育率显著(p<0.05)高于中期传代pBMSCs所产生的NT胚胎。晚期传代pBMSCs和转染了Sox2的中期传代pBMSCs(Sox2-pBMSCs)所产生的NT囊胚中凋亡小体的发生率显著(p<0.05)高于其他组。Oct4和Sox2-pBMSCs NT胚胎中Oct4、Sox2、Nanog、Cdx2、Dnmt3a和Igf2r基因的转录水平显著(p<0.05)更高。中期传代pBMSCs NT胚胎显示Bcl2的转录水平低于其他组,但Sox2-pBMSCs NT胚胎除外。随着传代次数增加,pBMSCs所产生的NT胚胎中Bax的转录水平逐渐升高,且在Sox2-pBMSCs NT胚胎中显著(p<0.05)更高。我们的结果表明,早期传代的pBMSCs在表达转录因子方面更具潜力,且显示出更高的分化能力,转染了Oct4的中期传代pBMSCs提高了NT胚胎的发育效率,这表明高Oct4表达的细胞作为NT供体更有效。