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冷冻保存对脂肪组织来源的微血管片段的影响。

Effects of cryopreservation on adipose tissue-derived microvascular fragments.

机构信息

Institute for Clinical and Experimental Surgery, Saarland University, Homburg/Saar, Germany.

Department of Trauma, Hand, and Reconstructive Surgery, Saarland University, Homburg/Saar, Germany.

出版信息

J Tissue Eng Regen Med. 2018 Apr;12(4):1020-1030. doi: 10.1002/term.2591. Epub 2017 Nov 27.

Abstract

Adipose tissue-derived microvascular fragments (ad-MVF) are effective vascularization units for tissue engineering. They rapidly reassemble into new microvascular networks after seeding on scaffolds and subsequent in vivo implantation. Herein, we analyzed whether the vascularization capacity of ad-MVF is affected by cryopreservation. Ad-MVF were isolated from the epididymal fat pads of C57BL/6 mice and cryopreserved for 7 days to compare their morphology, viability, cellular composition, and protein expression with freshly isolated control ad-MVF. Moreover, cryopreserved and control ad-MVF from green fluorescent protein (GFP) donor mice were seeded on collagen-glycosaminoglycan matrices (Integra ), which were implanted into dorsal skinfold chambers of GFP recipient animals to study their vascularization and incorporation using intravital fluorescence microscopy, histology, and immunohistochemistry. Cryopreservation of ad-MVF did not affect vessel morphology and cellular composition. However, cryopreservation was associated with an increased rate of necrotic cells and a significantly reduced number of transplantable ad-MVF. This was compensated by a higher angiogenic activity of the remaining ad-MVF, as indicated by significantly elevated expression levels of pro-angiogenic factors when compared to controls. Accordingly, cryopreserved and control ad-MVF induced a comparable vascularization and incorporation of implanted Integra without differences in microvascular network formation, maturation, and remodeling. Enhanced angiogenic sprouting even resulted in a higher fraction of GFP microvessels within the implants of the cryopreservation group. These findings indicate that cryopreservation of ad-MVF is feasible and, thus, offers the exciting opportunity to build up stocks of readily available vascularization units for future tissue engineering applications.

摘要

脂肪组织衍生的微血管片段(ad-MVF)是组织工程中有效的血管生成单位。它们在接种到支架上并随后体内植入后,能够迅速重新组装成新的微血管网络。在此,我们分析了 ad-MVF 的血管生成能力是否受到冷冻保存的影响。从 C57BL/6 小鼠的附睾脂肪垫中分离出 ad-MVF 并冷冻保存 7 天,以比较其形态、活力、细胞组成和蛋白表达与新鲜分离的对照 ad-MVF。此外,从 GFP 供体小鼠中分离出的冷冻保存和对照 ad-MVF 接种到胶原糖胺聚糖基质(Integra)上,将其植入 GFP 受体动物的背部皮肤囊腔中,使用活体荧光显微镜、组织学和免疫组织化学研究其血管生成和整合。ad-MVF 的冷冻保存不会影响血管形态和细胞组成。然而,冷冻保存与坏死细胞的比率增加以及可移植的 ad-MVF 数量显著减少有关。这通过剩余的 ad-MVF 的血管生成活性增加得到了补偿,与对照相比,其促血管生成因子的表达水平明显升高。因此,冷冻保存和对照 ad-MVF 诱导了可植入 Integra 中相当的血管生成和整合,在微血管网络形成、成熟和重塑方面没有差异。增强的血管生成发芽甚至导致冷冻保存组植入物中 GFP 微血管的比例更高。这些发现表明,ad-MVF 的冷冻保存是可行的,因此为未来组织工程应用中构建现成的血管生成单位提供了令人兴奋的机会。

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