首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Effects of cryopreservation of intact teeth on the isolated dental pulp stem cells.
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Effects of cryopreservation of intact teeth on the isolated dental pulp stem cells.

机译:完整牙齿的冷冻保存对离体牙髓干细胞的影响。

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INTRODUCTION: Human dental pulp stem cells (DPSCs) have been reported to be useful material for future regenerative medicine. Clinically, cryopreservation of intact teeth can successfully preserve the periodontal ligament for future autotransplantation; however, the effects of cryopreservation procedure on the properties of DPSCs are still unclear. The aim of this study was to test whether DPSCs isolated from cryopreserved teeth can express stem cell-specific markers. METHODS: In this study, a novel programmable freezer coupled to a magnetic field was used to perform the cryopreservation experiments. The tested DPSCs were isolated from magnetically cryopreserved and non-cryopreserved fresh teeth with an enzyme digestion procedure. The success rate of isolation, growth curves, morphology, stem cell-specific markers, and the differentiation capacity of the isolated cells were evaluated and compared. RESULTS: The isolation rate of dental pulp cells from magnetically cryopreserved teeth was 73%. After culture for 5 generations, there was no significant difference in cell viability between cells isolated from magnetically cryopreserved teeth and those isolated from fresh teeth. There were also no visible differences between the 2 groups of dental pulp cells in morphology, expression of stem cell markers, or osteogenic and adipogenic differentiations. CONCLUSIONS: The results suggest that cryopreserved whole teeth can be used for autotransplantation and provide a viable source of DPSCs.
机译:简介:据报道,人类牙髓干细胞(DPSC)是未来再生医学的有用材料。临床上,完整牙齿的冷冻保存可以成功地保存牙周膜,以备将来的自体移植。然而,冷冻保存程序对DPSCs的性质的影响仍不清楚。这项研究的目的是测试从冷冻保存的牙齿中分离出的DPSC是否可以表达干细胞特异性标记。方法:在这项研究中,一种新颖的可编程冰箱与磁场耦合被用于进行冷冻保存实验。通过酶消化程序从磁性冷冻保存的和非冷冻保存的新鲜牙齿中分离出测试的DPSC。评估并比较了分离成功率,生长曲线,形态,干细胞特异性标志物以及分离细胞的分化能力。结果:磁性冻存牙齿中的牙髓细胞分离率为73%。培养5代后,从磁性冷冻保存的牙齿分离的细胞与从新鲜牙齿分离的细胞之间的细胞活力没有显着差异。两组牙髓细胞在形态,干细胞标志物的表达或成骨和成脂分化方面也没有明显差异。结论:结果表明,冷冻保存的整颗牙齿可用于自体移植,并提供了可行的DPSC来源。

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