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Biopolymer gel matrix as acellular scaffold for enhanced dermal tissue regeneration

机译:生物聚合物凝胶基质作为无细胞支架,可增强真皮组织再生

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Biological grafts have drawbacks such as donor scarcity, disease transmission, tissue infection, while the scaffolds of either collagen or chitosan fabrics fail to become part of the tissue at the wound site, though they favor the formation of connective tissue matrix. This study developed a novel composite consisting of the combination of atelocollagen and chitosan in order to provide a biodegradable molecular matrix in gel form as a biomimetic surface for cell attachment, to promote the wound healing in excision wounds. We found that the topical application of biopolymer composite on the wound promoted cell proliferation, migration and collagen deposition overtime. The enhanced cellular activity in the collagen-chitosan treated wound tissue was also assed by increased levels of Platelet derived growth factor (PDGF) and Nerve growth factor (NGF) associated with elevated levels of antioxidants and decreased level of lipid peroxidation. The acellular matrix-like topical application material is designed to guide the eventual re-establishment of an anatomically normal skin. The results of this study demonstrate the feasibility of multi-cell regeneration on a molecular system that mimics tissue engineering in vivo.
机译:生物移植物具有诸如供体稀缺,疾病传播,组织感染的缺点,而胶原蛋白或壳聚糖织物的支架不能成为伤口部位组织的一部分,尽管它们有利于结缔组织基质的形成。这项研究开发了一种新颖的复合材料,该复合材料由Atelocollagen和壳聚糖组成,以提供凝胶形式的可生物降解分子基质作为仿生表面来附着细胞,从而促进切除伤口的愈合。我们发现,生物聚合物复合材料在伤口上的局部应用可促进细胞增殖,迁移和胶原蛋白随时间推移而沉积。胶原壳聚糖处理的伤口组织中增强的细胞活性还可以通过血小板衍生生长因子(PDGF)和神经生长因子(NGF)的水平升高与抗氧化剂水平升高和脂质过氧化水平降低相关联。设计无细胞基质样局部应用材料,以指导解剖上正常皮肤的最终重建。这项研究的结果证明了在模拟体内组织工程的分子系统上进行多细胞再生的可行性。

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