纳米纤维
乳状液
静电纺丝
抗菌剂
差示扫描量热法
涂层
材料科学
伤口护理
壳聚糖
化学工程
纤维素
化学
纳米技术
复合材料
有机化学
聚合物
外科
医学
物理
工程类
热力学
作者
Dalia A. Elsherbiny,Abdelrahman M. Abdelgawad,Tharwat I. Shaheen,Nayera A. M. Abdelwahed,Stefan Jockenhoevel,Samaneh Ghazanfari
标识
DOI:10.1016/j.ijbiomac.2023.123655
摘要
Long-term topical application of antibiotics on wounds has led to the emergence of drug-resistant bacterial infections. Antibiotic incorporation into the wound dressing requires enormous advancement of the field to ensure that the needed dose is released when the infection arises. This study synthesized a series of antimicrobial α-aminophosphonate derivatives, and the most effective compound was incorporated into thermoresponsive wound dressing patches. Wound dressing mats were fabricated by needleless electrospinning, and the resultant nanofiber mats were coated with a thermoresponsive eicosane/cellulose nanocrystals o/w system loaded with active α-aminophosphonate derivatives. Chemical, physical, thermal, and antimicrobial properties of the wound dressings were characterized wound dressings. Using SEM analysis, Nanofibers spun with 20 % w/v solutions were selected for drug-emulsion loading since they showed lower diameters with higher surface area. Furthermore, the drug-emulsion coating on the electrospun dressings improved the hydrophilicity of the wound dressings, and the thermoresponsive behavior of the mats was proved using differential scanning calorimetry data. Finally, the drug-loaded electrospun meshes were found active against tested microorganisms, and clear inhibition zones were observed. In conclusion, this novel approach of synthesizing a new family of antimicrobial molecules and their incorporation into nanofibers from renewable sources exhibits great potential for smart and innovative dressings.
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