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Cryopreservation of human dental follicle tissue for use as a resource of autologous mesenchymal stem cells

机译:用作自体间充质干细胞资源的人体牙科卵泡组织的冷冻保存

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The main purpose of this study was to develop a cryopreservation method for human dental follicle tissue to maintain autologous stem cells as a resource. A modified cryoprotectant, consisting of 0.05 M glucose, 0.05 M sucrose and 1.5 M ethylene glycol in phosphate-buffered saline (PBS) was employed, with a slow-ramp freezing rate. We observed >70% of cell survival rate after 3 months of tissue storage. Isolated and cultured human dental stem cells (hDSCs) from cryopreserved dental follicles expressed mesenchymal stem cell markers at a level similar to that of hDSCs from fresh tissue. They also successfully differentiated in vitro into the mesenchymal lineage, osteocytes, adipocytes and chondrocytes under specific inductions. Using immunohistochemistry, the early transcription factors OCT4, NANOG and SOX2 were moderately or weakly detected in the nucleus of both fresh and cryopreserved dental follicles. In addition, p63, CCND1, BCL2 and BAX protein expression levels were the same in both fresh and cryopreserved tissues. However, the positive-cell ratio and intensity of p53 protein was higher in cryopreserved tissues than in fresh tissues, indicating direct damage of the freeze-thawing process. Real-time PCR analysis of hDSCs at passage 2 from both fresh and cryopreserved dental follicles showed similar levels of mRNA for apoptosis-and transcription-related genes. Based on these results, a newly developed cryoprotectant, along with a slow ramp rate freezing procedure allows for long-term dental tissue preservation for later use as an autologous stem cell resource in regenerative cell therapy. Copyright (C) 2014 John Wiley & Sons, Ltd.
机译:本研究的主要目的是为人类牙科卵泡组织开发冷冻保存方法,以将自体干细胞作为资源维持。使用改性的冷冻保护剂,由0.05m葡萄糖,0.05μm蔗糖和1.5M乙二醇组成,磷酸盐缓冲盐水(PBS),慢速凝结速率缓慢。在3个月的组织储存后,我们观察到> 70%的细胞存活率。来自冷冻保存的牙卵泡的分离和培养的人牙科干细胞(HDSC)表达了间充质干细胞标记物,其水平与来自新鲜组织的HDSCs的水平相似。它们还在特定诱导下在体外成功地分化为间充质谱系,骨细胞,脂肪细胞和软骨细胞。使用免疫组织化学,在新鲜和冷冻保存的牙卵泡的核中适度或弱检测早期转录因子。另外,在新鲜和冷冻保存的组织中,P63,CCND1,BCL2和BAX蛋白表达水平相同。然而,在新鲜组织中,冷冻保存组织中P53蛋白的正细胞比和强度高,表明冻融过程的直接损伤。来自新鲜和冷冻保存牙卵泡的第2段的HDSCS的实时PCR分析显示出相似水平的细胞凋亡和转录相关基因的mRNA。基于这些结果,新开发的冷冻保护剂以及缓慢的斜坡率冷冻程序允许长期牙科组织保存作为再生细胞疗法中的自体干细胞资源。版权所有(c)2014 John Wiley&Sons,Ltd。

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