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Experimental study of ASCs combined with POC-PLA patch for the reconstruction of full-thickness chest wall defects

机译:ASC联合POC-PLA贴片修复全层胸壁缺损的实验研究

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摘要

To explore the repairing effect of combination of adipose stem cells (ASCs) and composite scaffolds on CWR, the electrospun Poly 1, 8-octanediol-co-citric acid (POC)-poly-L-lactide acid (PLA) composite scaffolds were prepared, followed by in vitro and in vivo biocompatibility evaluation of the scaffolds. Afterwards, ASCs were seeded on POC-PLA to construct the POC-PLA-ASCs scaffolds, and the POC-PLA, POC-PLA-ASCs, and traditional materials expanded polytetrafluoroethylene (ePTFE) were adopt for CWR in New Zealand white (NZW) rabbit models. As results, the POC-PLA-ASCs patches possessed good biocompatibility as the high proliferation ability of cells surrounding the patches. Rabbits in POC-PLA-ASCs groups showed better pulmonary function, less pleural adhesion, higher degradation rate and more neovascularization when compared with that in other two groups. The results of western blot indicated that POC-PLA-ASCs patches accelerated the expression of VEGF and Collagen I in rabbit models. From the above, our present study demonstrated that POC-PLA material was applied for CWR successfully, and ASCs seeded on the sheets could improve the pleural adhesions and promote the reparation of chest wall defects.
机译:为了探讨脂肪干细胞(ASCs)和复合支架对CWR的修复作用,制备了电纺聚1、8-辛二醇-柠檬酸(POC)-聚L-丙交酯酸(PLA)复合支架。 ,然后进行支架的体外和体内生物相容性评估。之后,将ASC接种到POC-PLA上以构建POC-PLA-ASCs支架,并在新西兰白(NZW)中将POC-PLA,POC-PLA-ASC和传统材料扩展的聚四氟乙烯(ePTFE)用于CWR。兔子模型。结果,POC-PLA-ASCs贴片具有良好的生物相容性,因为贴片周围的细胞具有高增殖能力。与其他两组相比,POC-PLA-ASCs组的兔子表现出更好的肺功能,更少的胸膜粘连,更高的降解率和更多的新生血管形成。免疫印迹结果表明,POC-PLA-ASCs贴片可促进兔模型中VEGF和I型胶原的表达。综上所述,我们的研究表明,POC-PLA材料已成功应用于CWR,并且将ASC植入片材上可改善胸膜粘连并促进胸壁缺损的修复。

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