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FTIR imaging analysis of bioactive microsphere incorporated stem cell sheets for osteochondral defect repair

机译:掺入干细胞片的生物活性微球体的FTIR成像分析,用于修复骨软骨缺损

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Several tissue engineering approaches have been proposed for articular cartilage repair, but to date there is no consensus on the optimal method. Self-assembling microsphere-incorporated cell sheets have been developed recently for cartilage tissue engineering applications, as they provide an environment for the chondrogenic induction of human mesenchymal stem cells (hMSCs). In the current study, early articular cartilage repair was assessed in a rabbit osteochondral defect model treated with self-assembling hMSC sheets incorporated with bioactive polymer microspheres. Histological sections were evaluated by FTIR imaging for molecular composition. We found that the incorporation of transforming growth factor β1 to the microspheres improved the quality of repair tissue based on increased repair tissue, and increased collagen maturity, at one and three months post-repair. Evaluation of repair tissue at longer timepoints will assess whether these preliminary results will extend to the quality of more mature repair tissue.
机译:已经提出了几种组织工程学方法来修复关节软骨,但是迄今为止,关于最佳方法尚无共识。自组装的微球结合细胞片近来已被开发用于软骨组织工程应用,因为它们提供了诱导人间充质干细胞(hMSCs)成软骨的环境。在本研究中,在兔软骨软骨缺损模型中评估了早期关节软骨的修复,该模型用自组装的hMSC薄板结合生物活性聚合物微球进行治疗。通过FTIR成像评估组织学切片的分子组成。我们发现,在修复后的一三个月内,将转化生长因子β1掺入微球可改善修复组织的质量,并增加修复组织的数量,并增加胶原蛋白的成熟度。在更长的时间点评估修复组织将评估这些初步结果是否会扩展到更成熟的修复组织的质量。

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