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首页> 外文期刊>Tissue engineering, Part A >Bone-forming capacity of mesenchymal stromal cells when cultured in the presence of human platelet lysate as substitute for fetal bovine serum
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Bone-forming capacity of mesenchymal stromal cells when cultured in the presence of human platelet lysate as substitute for fetal bovine serum

机译:在存在人类血小板裂解物作为胎牛血清替代品的情况下培养的间充质基质细胞的成骨能力

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摘要

In tissue engineering, strategies are being developed to repair large bone defects by combining biomaterials and bone marrow-derived multipotent mesenchymal stromal cells (MSCs). For expansion of MSCs under good manufacturing practice conditions, human platelet lysate (PL) can serve as substitute for fetal bovine serum (FBS) in culture media. We compared the in vivo bone-forming capacity of passage 3 MSCs cultured with either PL or FBS for nine different human donors. We also tested the growth kinetics, antigen expression profile, and the multilineage differentiation capacity in vitro of these MSCs. The in vivo bone-forming capacity was determined by seeding culture-expanded MSCs onto biphasic calcium phosphate scaffolds. Hybrid constructs were implanted subcutaneously in nude mice, retrieved after 6 weeks, and analyzed using histomorphometry. PL-supplemented cultures resulted in significantly larger colonies, shorter culture time period, and higher population doublings between P1 and P3 compared to FBS-containing cultures. No differences were observed in antigen expression profiles or differentiation capacities into the osteoblastic, chondrogenic, and adipogenic lineages, qualitatively. In vivo bone formation with PL-supplemented cultures of MSCs was demonstrated in 9/9 donors versus 6/9 for FBS-supplemented cultures. These results warrant the use of PL for ex vivo expansion of human MSCs for bone tissue engineering applications.
机译:在组织工程中,正在开发通过结合生物材料和骨髓衍生的多能间充质基质细胞(MSC)来修复大骨缺损的策略。为了在良好的生产实践条件下扩增MSC,人血小板裂解液(PL)可以替代培养基中的胎牛血清(FBS)。我们比较了用PL或FBS培养的第9代人类供体的第3代MSC的体内成骨能力。我们还测试了这些MSC的体外生长动力学,抗原表达谱和多系分化能力。通过将培养物扩增的MSCs接种到双相磷酸钙支架上来确定体内骨形成能力。将杂交构建体皮下植入裸鼠中,在6周后取回,并使用组织形态计量学进行分析。与含FBS的培养相比,补充PL的培养导致明显更大的菌落,更短的培养时间,以及P1和P3之间的种群倍增更高。定性地,未观察到抗原表达谱或成骨细胞系,成软骨细胞系和成脂细胞系的分化能力的差异。在9/9的供体中证实了用PL补充的MSC培养物的体内骨形成,而在FBS补充的培养物中则为6/9。这些结果保证了将PL用于人MSC的离体扩增以用于骨组织工程应用。

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