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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Poly(3-hydroxybutyrate)-ethyl cellulose based bio-composites with novel characteristics for infection free wound healing application
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Poly(3-hydroxybutyrate)-ethyl cellulose based bio-composites with novel characteristics for infection free wound healing application

机译:具有新型特性的聚(3-羟基丁酸)-乙基纤维素基生物复合材料,可无创伤口愈合

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摘要

A series of bio-composites including poly3-hydroxybutyrate [P(3HB)] grafted ethyl cellulose (EC) stated as P(3HB)-EC were successfully synthesised. Furthermore, natural phenols e.g., p-4-hydroxybenzoic acid (HBA) and ferulic acid (FA) were grafted onto the newly developed P(3HB)-EC-based bio-composites under laccase-assisted environment without the use of additional initiators or crosslinking agents. The phenol grafted bio-composites were critically evaluated for their antibacterial and biocompatibility features as well as their degradability in soil. In particular, the results of the antibacterial evaluation for the newly developed bio-composites indicated that 20HBA-g-P(3HB)-EC and 15FA-g-P(3HB)-EC biocomposites exerted strong bactericidal and bacteriostatic activity against Gram(-) E. coli NTCT 10418 as compared to the Gram(+) B. subtilis NCTC 3610. This study shows further that at various phenolic concentrations the newly synthesised bio-composites remained cytocompatible with human keratinocyte-like HaCaT skin cells, as 100% cell viability was recorded, in vitro. As for the degradation, an increase in the degradation rate was recorded during the soil burial analyses over a period of 42 days. These findings suggest that the reported bio-composites have great potential for use in wound healing; covering the affected skin area which may favour tissue repair over shorter periods. (C) 2015 Elsevier B.V. All rights reserved.
机译:成功合成了一系列生物复合材料,包括聚3-羟基丁酸酯[P(3HB)]接枝的乙基纤维素(EC),称为P(3HB)-EC。此外,在漆酶辅助的环境下,无需使用其他引发剂,也可以将对苯二酚(例如对-4-羟基苯甲酸(HBA)和阿魏酸(FA))接枝到新开发的基于P(3HB)-EC的生物复合材料上。交联剂。对苯酚接枝的生物复合材料的抗菌和生物相容性特征以及它们在土壤中的降解性进行了严格评估。特别地,对新开发的生物复合物的抗菌评价结果表明,20HBA-gP(3HB)-EC和15FA-gP(3HB)-EC生物复合物对革兰氏大肠杆菌具有很强的杀菌和抑菌活性。 NTCT 10418与Gram(+)枯草芽孢杆菌NCTC 3610相比。这项研究进一步表明,在各种酚浓度下,新合成的生物复合材料仍与人角质形成细胞样HaCaT皮肤细胞保持细胞相容性,记录了100%的细胞活力,体外。至于降解,在42天的土壤埋藏分析期间记录了降解速率的增加。这些发现表明,所报道的生物复合材料具有用于伤口愈合的巨大潜力。覆盖受影响的皮肤区域,这可能有助于在较短时间内进行组织修复。 (C)2015 Elsevier B.V.保留所有权利。

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