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Inherent differential propensity of dental pulp stem cells derived from human deciduous and permanent teeth

机译:源自人类乳牙和恒牙的牙髓干细胞的固有差异倾向

摘要

Lately, several new stem cell sources and their effective isolation have been reported that claim to have potential for therapeutic applications. However, it is not yet clear which type of stem cell sources are most potent and best for targeted therapy. Lack of understanding of nature of these cells and their lineage-specific propensity might hinder their full potential. Therefore, understanding the gene expression profile that indicates their lineage-specific proclivity is fundamental to the development of successful cell-based therapies. Methods: We compared proliferation rate, gene expression profile, and lineage-specific propensity of stem cells derived from human deciduous (SCD) and permanent teeth (DPSCs) over 5 passages. Results: The proliferation rate of SCD was higher (cell number, 25 x 10(6) cells/mL; percent colony-forming units [CFUs], 151.67 +/- 10.5; percent cells in S/G2 phase, 12.4 +/- 1.48) than that of DPSCs (cell number, 21 x 10(6) cells/mL; percent CFUs, 133 +/- 17.62; percent cells in S/G2 phase, 10.4 +/- 1.18). It was observed that fold expression of several pluripotent markers such as OCT4, SOX2, NANOG, and REX1 were higher (>2) in SCD as compared with DPSCs. However, DPSCs showed higher expression of neuroectodermal markers PAX6, GBX2, and nestin (fold expression >100). Similarly, higher neurosphere formation and neuronal marker expression (NF, GFAP) were found in the differentiated DPSCs into neuron-like cells as compared with SCD. Conclusions: This study thus demonstrates that both SCD and DPSCs exhibit specific gene expression profile, with clear-cut inclination of DPSCs toward neuronal lineage. (J Endod 2010;36:1504-1515)
机译:最近,已经报道了几种新的干细胞来源及其有效分离方法,声称具有治疗用途的潜力。但是,尚不清楚哪种类型的干细胞来源最有效,最适合靶向治疗。缺乏对这些细胞的性质及其谱系特异性的了解可能会阻碍它们的全部潜力。因此,了解表明其谱系特异性倾向的基因表达谱是成功开发基于细胞的疗法的基础。方法:我们比较了人类乳牙(SCD)和恒牙(DPSC)经过5次传代的干细胞的增殖速率,基因表达谱和谱系特异性倾向。结果:SCD的增殖速率更高(细胞数量,25 x 10(6)细胞/ mL;集落形成单位百分数(CFU),151.67 +/- 10.5; S / G2期细胞百分比,12.4 +/- 1.48),而不是DPSC(细胞数量,21 x 10(6)细胞/ mL; CFU百分数,133 +/- 17.62;处于S / G2相的细胞百分数,10.4 +/- 1.18)。观察到,与DPSCs相比,SCD中几种多能性标记(如OCT4,SOX2,NANOG和REX1)的折叠表达更高(> 2)。然而,DPSCs显示神经外胚层标志物PAX6,GBX2和nestin的更高表达(折叠表达> 100)。类似地,与SCD相比,在分化成DPSC的神经元样细胞中发现了更高的神经球形成和神经元标记表达(NF,GFAP)。结论:因此,这项研究表明,SCD和DPSCs均表现出特定的基因表达谱,并且DPSCs向神经元谱系有明显的倾斜。 (J Endod 2010; 36:1504-1515)

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