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Observations of Skin Tissue Regenerations in Biomaterial Scaffolds with Different Biodegradability

机译:具有不同生物降解性的生物材料支架中皮肤组织再生的观察

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Objective: To explore the effects of the biodegradability of biomaterial scaffolds on skin tissue regeneration and its neovascularization by the animal experiments. Methods: A piece of porous silk fibroin film (SF) of easy biodegradation and a piece of porous polyvinyl alcohol film (PVA) of hard biodegradation were implanted into a same skin wound of adult rat, and the differences in the regenerative blood vessel and tissue at 5, 10, 16, 41 days after surgery were observed by histological methods. Results: (1) at 10 days after surgery, the SF started to degrade, the closed areas without cell infiltration were opened up and the entire material was filled with the regenerative tissue, and there were still the closed areas in the PVA, (2) the new vascular network remodeling in the SF and P VA appeared at 10 days and 41 days after surgery, respectively, and (3) at 16 days after surgery, most of the SF material had degraded and substantially been replaced with the regenerative tissue, and the visible degradation of the P VA appeared at 41 days after surgery. Conclusion: The good biodegradability of the SF was helpful both to all vascularization of the material and to the regenerative blood vessels remodeling, and the regenerative tissue was closer to the normal dermal tissue than in the PVA.
机译:目的:探讨生物材料支架生物降解性对动物组织再生对皮肤组织再生及其新生血管的影响。方法:将硬质生物降解的多孔丝纤维素膜(SF)和硬生物降解的一块多孔聚乙烯醇膜(PVA)植入成年大鼠的相同皮肤伤口中,以及再生血管和组织的差异在通过组织学方法观察到手术后的5,10,16,41天。结果:(1)手术后10天,SF开始降解,打开没有细胞浸润的封闭区域,整个材料充满了再生组织,仍然仍有PVA的封闭区域,(2 )SF和P VA中的新血管网络重塑在手术后10天和41天,(3)手术后16天,大多数SF材料已经降解并基本上被再生组织替换,并且P VA的可见降解在手术后41天出现。结论:SF的良好生物降解性与材料的所有血管和再生血管重塑有助于,再生组织比在PVA中更接近正常的真皮组织。

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