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高浓度蜂蜜壳聚糖电纺纳米纤维:生物相容性和抗菌效果。

High concentration honey chitosan electrospun nanofibers: biocompatibility and antibacterial effects.

机构信息

Novel Diagnostics & Therapeutics Research Group, Department of Chemistry, School of Sciences & Engineering, The American University in Cairo, New Cairo 11835, Egypt.

Novel Diagnostics & Therapeutics Research Group, Department of Chemistry, School of Sciences & Engineering, The American University in Cairo, New Cairo 11835, Egypt.

出版信息

Carbohydr Polym. 2015 May 20;122:135-43. doi: 10.1016/j.carbpol.2014.12.051. Epub 2015 Jan 2.

Abstract

Honey nanofibers represent an attractive formulation with unique medicinal and wound healing advantages. Nanofibers with honey concentrations of <10% were prepared, however, there is a need to prepare nanofibers with higher honey concentrations to increase the antibacterial and wound healing effects. In this work, chitosan and honey (H) were cospun with polyvinyl alcohol (P) allowing the fabrication of nanofibers with high honey concentrations up to 40% and high chitosan concentrations up to 5.5% of the total weight of the fibers using biocompatible solvents (1% acetic acid). The fabricated nanofibers were further chemically crosslinked, by exposure to glutaraldehyde vapor, and physically crosslinked by heating and freezing/thawing. The new HP-chitosan nanofibers showed pronounced antibacterial activity against Staphylococcus aureus but weak antibacterial activity against Escherichia coli. The developed HP-chitosan nanofibers revealed no cytotoxicity effects on cultured fibroblasts. In conclusion, biocompatible, antimicrobial crosslinked honey/polyvinyl alcohol/chitosan nanofibers were developed which hold potential as effective wound dressing.

摘要

蜂蜜纳米纤维具有独特的药用和伤口愈合优势,是一种有吸引力的制剂。已经制备了蜂蜜浓度<10%的纳米纤维,然而,需要制备更高浓度的蜂蜜纳米纤维,以提高抗菌和伤口愈合效果。在这项工作中,壳聚糖和蜂蜜(H)与聚乙烯醇(P)共纺,允许使用生物相容性溶剂(1%乙酸)制备高达 40%的高浓度蜂蜜和高达 5.5%的壳聚糖纳米纤维。制备的纳米纤维进一步通过戊二醛蒸汽化学交联,并通过加热和冻融物理交联。新的 HP-壳聚糖纳米纤维对金黄色葡萄球菌表现出明显的抗菌活性,但对大肠杆菌的抗菌活性较弱。开发的 HP-壳聚糖纳米纤维对培养的成纤维细胞没有细胞毒性作用。总之,开发了具有生物相容性、抗菌交联的蜂蜜/聚乙烯醇/壳聚糖纳米纤维,具有作为有效伤口敷料的潜力。

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