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Eco-friendly technology for preparation, characterization and promotion of honey bee propolis extract loaded cellulose acetate nanofibers in medical domains

机译:生态友好型技术制备,表征和促进蜜蜂蜂胶提取物乙酸纤维素纳米纤维在医学域中

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摘要

Honey bee propolis extract (HBP) was prepared by three methods; namely, soxhlet-reflux, magnetic stirring and ultrasound extraction. Based on the efficacies of HBP formation, the soxhlet-reflux method gave the highest yield of HBP. Electrospinning of cellulose acetate (CA) solution loaded with different concentrations of HBP was assessed. The results show that the surface morphology of CA nanofibers characterized by SEM changes with the addition of HBP to CA solution. The thermal stability of the as-formed CA/HBP marginally increases when compared with CA nanofibers. It was also observed that the CA/HBP nanofibers are effective inhibitors of growth of Escherichia coli (E. coli) and Staphylococcus aureus (S. aureus). Additionally, the in vitro release results of HBP from CA nanofibers displayed that the HBP release is sustained and controlled in neutral pH rather than alkaline and acid pH.
机译:采用三种方法制备了蜜蜂蜂胶提取物(HBP);即索氏回流、磁搅拌和超声波提取。根据生成HBP的效率,索氏回流法得到的HBP产率最高。对负载不同浓度HBP的醋酸纤维素(CA)溶液的静电纺丝进行了评估。结果表明,在钙溶液中加入HBP后,用SEM表征的钙纳米纤维的表面形貌发生了变化。与CA纳米纤维相比,形成的CA/HBP的热稳定性略有提高。研究还发现,CA/HBP纳米纤维是大肠杆菌(E.coli)和金黄色葡萄球菌(S.aureus)生长的有效抑制剂。此外,钙纳米纤维对HBP的体外释放结果表明,HBP的释放是在中性pH下而不是在碱性和酸性pH下持续和控制的。

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