使用胶原酶分离脂肪组织来源的干细胞-是否有实质性的操作?

E. Koellensperger, F. Gramley, G. Germann, U. Leimer
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引用次数: 0

摘要

背景:胶原酶通常用于从人类脂肪组织中分离基质血管部分(SVF)或脂肪组织衍生的干细胞(ADSCs)。根据医疗监管机构的分类,酶分解可能是一种实质性的操作。本研究探讨了胶原酶解离人脂肪组织对ADSCs体外功能和行为的可能影响。方法和结果:将来自9个供体的脂肪组织分为两个相等的部分。然后分别用机械或胶原酶分离SVF。在分离后和第五代时直接分析所得细胞的表面标记物。在第四代后测量增殖、三系分化和分泌组标志物。与机械分离相比,使用胶原酶不会改变ADSCs的典型表面标记物的表达。与机械分离的ADSCs相比,用胶原酶分离的ADSC显示出显著更短的群体倍增时间(p<0.001)、显著更高的平均特异性GPDH活性、更强的周脂蛋白染色强度(p=0.005)和显著更大的细胞外钙沉积(p=0.006)。成脂和成骨标记基因的表达在机械分离和酶分离的ADSCs中没有差异。蛋白甘氨酸的产生和2型胶原的浓度没有显著差异(p>0.05)。除了机械分离的ASDCs中CCL2浓度增加(p=0.01)外,两种分离方法之间分泌蛋白的浓度没有显著差异。结论:胶原酶的使用不会显著损害人脂肪组织来源的干细胞的体外中心特性和功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Use of collagenase to isolate adipose tissue-derived stem cells – substantial manipulation or not?
Background: Collagenase is commonly used to isolate the stromal vascular fraction (SVF) or adipose tissue-derived stem cells (ADSCs) from human adipose tissue. Enzymatic breakdowns may be a substantial manipulation according to the classifications of medical regulatory authorities. This study investigates the possible effects of human adipose tissue dissociation with collagenase on in vitro function and behavior of ADSCs. Methods and results: Adipose tissue from nine donors was divided into two equal fractions. SVF was then isolated either mechanically or with collagenase, respectively. The resulting cells were analyzed for their surface markers directly after isolation and at passage five. Proliferation, tri-lineage differentiation, and secretome markers were measured after passage four. Using collagenase compared to mechanical isolation did not alter the expression of typical surface markers of ADSCs. ADSCs isolated with collagenase showed a significantly shorter population doubling time (p < 0.001), a significantly higher mean specific GPDH-activity, a stronger intensity in perilipin staining (p = 0.005), and a significantly higher extracellular calcium deposition (p = 0.006) than mechanically isolated ADSCs. The expression of adipogenic and osteogenic marker genes was not different in mechanically versus enzymatically isolated ADSCs. There were no significant differences in proteoglcyan production (p > 0.05) and the concentration of type 2 collagen. Except for an increased CCL2 concentration in mechanically isolated ASDCs (p = 0.01), there were no significant differences in the concentration of secreted proteins between both isolation methods. Conclusions: The use of collagenase does not substantially impair central in vitro characteristics and functions of human adipose tissue-derived stem cells.
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