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无血清冷冻液中脂肪组织基质血管部分的冷冻保存。

Cryopreservation of stromal vascular fraction of adipose tissue in a serum-free freezing medium.

机构信息

Department of Mechanical Engineering, Louisiana State University, Baton Rouge, LA, USA.

出版信息

J Tissue Eng Regen Med. 2010 Mar;4(3):224-32. doi: 10.1002/term.232.

Abstract

Developing effective techniques for the cryopreservation of human adipose-derived adult stem cells could increase the usefulness of these cells in tissue engineering and regenerative medicine. Unfortunately, the use of serum and a commonly used cryoprotectant chemical, dimethyl sulphoxide (DMSO), during cryopreservation storage restricts the direct translation of adult stem cells to in vivo applications. The objective of this study was to test the hypothesis that the stromal vascular fraction (SVF) of adipose tissue can be effectively cryopreserved and stored in liquid nitrogen, using a freezing medium containing high molecular weight polymers, such as methylcellulose (MC) and/or polyvinylpyrollidone (PVP), as the cryoprotective agent (CPA) instead of DMSO. To this end, we investigated the post-freeze/thaw viability and apoptotic behaviour of SVF of adipose tissue frozen in 16 different media: (a) the traditional medium containing Dulbecco's modified Eagle's medium (DMEM) with 80% fetal calf serum (FCS) and 10% DMSO; (b) DMEM with 80% human serum (HS) and 10% DMSO; (c) DMEM with 0%, 2%, 4%, 6%, 8% or 10% DMSO; (d) DMEM with 1% MC and 10% of either HS or FCS or DMSO; (e) DMEM with 10% PVP and varying concentrations of FCS (0%, 10%, 40% or 80%); (f) DMEM with 10% PVP and 10% HS. Approximately 1 ml (10(6) cells/ml) of SVF cells were frozen overnight in a -80 degrees C freezer and stored in liquid nitrogen for 2 weeks before being rapidly thawed in a 37 degrees C water bath (1-2 min agitation), resuspended in culture medium and seeded in separate wells of a six-well plate for a 24 h incubation period at 37 degrees C. After 24 h, the thawed samples were analysed by brightfield microscopy and flow cytometry. The results suggest that the absence of DMSO (and the presence of MC) significantly increases the fraction of apoptotic and/or necrotic SVF cells. However, the percentage of viable cells obtained with 10% PVP and DMEM was comparable with that obtained in freezing medium with DMSO and serum (HS or FCS), i.e. approximately 54 +/- 14% and approximately 63 +/- 10%, respectively. Adipogenic and osteogenic differentiation behaviour of the frozen thawed cells was also assessed, using histochemical staining. Our results suggest that post-thaw SVF cell viability and adipogenic and osteogenic differentiability can be maintained even when they are frozen in the absence of serum and DMSO but with 10% PVP in DMEM.

摘要

开发有效的人类脂肪来源成体干细胞的低温保存技术可以增加这些细胞在组织工程和再生医学中的应用。不幸的是,在冷冻保存过程中使用血清和常用的冷冻保护剂二甲基亚砜(DMSO)会限制成体干细胞在体内应用中的直接转化。本研究的目的是验证以下假设,即脂肪组织的基质血管部分(SVF)可以有效地冷冻保存并储存在液氮中,使用包含高分子量聚合物(如甲基纤维素(MC)和/或聚乙烯吡咯烷酮(PVP)的冷冻培养基作为冷冻保护剂(CPA),而不是 DMSO。为此,我们研究了在 16 种不同的培养基中冷冻的脂肪组织 SVF 的冷冻/解冻后活力和凋亡行为:(a)传统培养基,含有 80%胎牛血清(FCS)和 10%DMSO 的 DMEM;(b)含有 80%人血清(HS)和 10%DMSO 的 DMEM;(c)含有 0%、2%、4%、6%、8%或 10%DMSO 的 DMEM;(d)含有 1%MC 和 10%HS 或 FCS 或 DMSO 的 DMEM;(e)含有 10%PVP 和不同浓度 FCS(0%、10%、40%或 80%)的 DMEM;(f)含有 10%PVP 和 10%HS 的 DMEM。大约 1ml(106 个细胞/ml)的 SVF 细胞在-80°C 冰箱中过夜冷冻,并在液氮中储存 2 周,然后在 37°C 水浴中快速解冻(1-2 分钟搅拌),悬浮在培养基中,并接种到六孔板的单独孔中进行 37°C孵育 24 小时。24 小时后,通过明场显微镜和流式细胞术分析解冻样品。结果表明,缺乏 DMSO(和存在 MC)显著增加了凋亡和/或坏死的 SVF 细胞比例。然而,用 10%PVP 和 DMEM 获得的存活细胞百分比与用 DMSO 和血清(HS 或 FCS)的冷冻培养基获得的存活细胞百分比相当,分别约为 54%+/-14%和约 63%+/-10%。还使用组织化学染色评估了冷冻解冻细胞的成脂和成骨分化行为。我们的结果表明,即使在没有血清和 DMSO 的情况下,用 10%PVP 在 DMEM 中冷冻,也可以保持解冻后 SVF 细胞的活力和成脂和成骨分化能力。

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