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首页> 外文期刊>Cryobiology: International Journal of Low Temperature Biology and Medicine >Optimized cryopreservation method for human dental pulp-derived stem cells and their tissues of origin for banking and clinical use.
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Optimized cryopreservation method for human dental pulp-derived stem cells and their tissues of origin for banking and clinical use.

机译:针对人牙髓来源的干细胞及其起源组织的最佳冷冻保存方法,可用于银行和临床用途。

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摘要

Dental pulp is a promising source of mesenchymal stem cells with the potential for cell-mediated therapies and tissue engineering applications. We recently reported that isolation of dental pulp-derived stem cells (DPSC) is feasible for at least 120h after tooth extraction, and that cryopreservation of early passage cultured DPSC leads to high-efficiency recovery post-thaw. This study investigated additional processing and cryobiological characteristics of DPSC, ending with development of procedures for banking. First, we aimed to optimize cryopreservation of established DPSC cultures, with regards to optimizing the cryoprotective agent (CPA), the CPA concentration, the concentration of cells frozen, and storage temperatures. Secondly, we focused on determining cryopreservation characteristics of enzymatically digested tissue as a cell suspension. Lastly, we evaluated the growth, surface markers and differentiation properties of DPSC obtained from intact teeth and undigested, whole dental tissue frozen and thawed using the optimized procedures. In these experiments it was determined that Me(2)SO at a concentration between 1 and 1.5M was the ideal cryopreservative of the three studied. It was also determined that DPSC viability after cryopreservation is not limited by the concentration of cells frozen, at least up to 2x10(6) cells/mL. It was further established that DPSC can be stored at -85 degrees C or -196 degrees C for at least six months without loss of functionality. The optimal results with the least manipulation were achieved by isolating and cryopreserving the tooth pulp tissues, with digestion and culture performed post-thaw. A recovery of cells from >85% of the tissues frozen was achieved and cells isolated post-thaw from tissue processed and frozen with a serum free, defined cryopreservation medium maintained morphological and developmental competence and demonstrated MSC-hallmark trilineage differentiation under the appropriate culture conditions.
机译:牙髓是间充质干细胞的有希望的来源,具有用于细胞介导的疗法和组织工程应用的潜力。我们最近报道,拔牙后至少120h分离牙髓来源的干细胞(DPSC)是可行的,而早期传代培养的DPSC的冷冻保存可导致融化后的高效恢复。这项研究调查了DPSC的其他加工和冷冻生物学特性,最后发展了银行程序。首先,我们旨在优化已建立的DPSC培养物的冷冻保存,以优化冷冻保护剂(CPA),CPA浓度,冷冻细胞浓度和储存温度。其次,我们专注于确定酶消化组织作为细胞悬液的冷冻保存特性。最后,我们评估了使用优化程序从完整牙齿和未消化的完整牙齿组织冷冻并融化获得的DPSC的生长,表面标记和分化特性。在这些实验中,确定浓度为1至1.5M的Me(2)SO是三个研究对象的理想冷冻保存剂。还确定了冷冻保存后DPSC的存活率不受冷冻细胞浓度的限制,至少不超过2x10(6)个细胞/ mL。进一步确定,DPSC可以在-85摄氏度或-196摄氏度下保存至少六个月而不会失去功能。通过分离和冷冻保存牙髓组织,并在融化后进行消化和培养,以最少的操作获得了最佳结果。从> 85%的冷冻组织中恢复了细胞,解冻后从组织中分离的细胞用无血清的特定冷冻保存培养基处理并冷冻,在适当的培养条件下保持了形态和发育能力,并证明了MSC-霍尔马克三系分化。

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