Institute for Clinical and Experimental Surgery, Saarland University, Homburg/Saar, Germany.
J Tissue Eng Regen Med. 2019 Feb;13(2):131-142. doi: 10.1002/term.2774. Epub 2019 Jan 6.
Adipose tissue-derived microvascular fragments (ad-MVFs) are promising vascularization units for tissue engineering. In this study, we analysed the effects of normothermic (37°C) and subnormothermic (20°C) short-term cultivation on their viability and network forming capacity. Ad-MVFs from green fluorescent protein (GFP) and GFP C57BL/6 mice were cultivated for 24 hr at 37°C or 20°C. Freshly isolated, noncultivated ad-MVFs served as controls. Number, length, viability, proliferation, and angiogenic activity of the ad-MVFs were assessed by microscopic analysis and proteome profiling. GFP ad-MVFs were seeded onto collagen-glycosaminoglycan matrices, which were implanted into dorsal skinfold chambers of GFP mice to analyse their vascularization by means of intravital fluorescence microscopy, histology, and immunohistochemistry. Depending on the temperature, short-term cultivation of ad-MVFs markedly changed their expression of multiple proangiogenic and antiangiogenic factors. Moreover, cultivation at 37°C significantly increased the number of apoptotic cells within ad-MVFs, whereas 20°C preserved the viability of ad-MVFs and even promoted the proliferation of endothelial and perivascular cells. Accordingly, ad-MVFs cultivated at 20°C also exhibited an enhanced in vivo vascularization capacity when compared with normothermically cultivated ad-MVFs and noncultivated controls. This was indicated by an accelerated network formation, an increased microvascular remodelling, and a higher density of GFP microvessels within implanted matrices. Thus, if ad-MVFs require short-term storage before in vivo application, subnormothermic cultivation should be preferred to normothermic cultivation.
脂肪组织衍生的微血管片段(ad-MVFs)是组织工程中很有前途的血管化单位。在这项研究中,我们分析了常温和亚低温(20°C)短期培养对其活力和网络形成能力的影响。来自 GFP 和 GFP C57BL/6 小鼠的 ad-MVFs 在 37°C 或 20°C 下培养 24 小时。新鲜分离、未经培养的 ad-MVFs 作为对照。通过显微镜分析和蛋白质组谱分析评估 ad-MVFs 的数量、长度、活力、增殖和血管生成活性。将 GFP ad-MVFs 接种到胶原蛋白-糖胺聚糖基质上,然后将其植入 GFP 小鼠的背部皮褶室中,通过活体荧光显微镜、组织学和免疫组织化学分析其血管生成情况。根据温度的不同,ad-MVFs 的短期培养显著改变了其多种促血管生成和抗血管生成因子的表达。此外,37°C 培养显著增加了 ad-MVFs 内凋亡细胞的数量,而 20°C 则保持了 ad-MVFs 的活力,甚至促进了内皮细胞和周细胞的增殖。相应地,与常温和培养的 ad-MVFs 和未经培养的对照相比,在 20°C 下培养的 ad-MVFs 也表现出增强的体内血管化能力。这表现在更快的网络形成、增强的微血管重塑以及植入基质中 GFP 微血管的密度增加。因此,如果 ad-MVFs 在体内应用前需要短期储存,则应优先选择亚低温培养而不是常温和培养。