聚己内酯
壳聚糖
纳米纤维
化学工程
静电纺丝
材料科学
聚乙烯醇
药物输送
纳米颗粒
膜
高分子化学
核化学
化学
复合材料
纳米技术
聚合物
生物化学
工程类
作者
Mohamed Ahmed Mohamady Hussein,Ece Güler,Erkan Rayaman,Muhammet Emin Çam,Ali Şahin,Mariusz Grinholc,Demet Sezgin Mansuroğlu,Yeşim Müge Şahin,Oğuzhan Gündüz,Mamoun Muhammed,Ibrahim M. El‐Sherbiny,Mosaad Megahed
标识
DOI:10.1016/j.carbpol.2021.118373
摘要
Dual-drug delivery systems were constructed through coaxial techniques, which were convenient for the model drugs used the present work. This study aimed to fabricate core-shell electrospun nanofibrous membranes displaying simultaneous cell proliferation and antibacterial activity. For that purpose, phenytoin (Ph), a well-known proliferative agent, was loaded into a polycaprolactone (PCL) shell membrane, and as-prepared silver-chitosan nanoparticles (Ag-CS NPs), as biocidal agents, were embedded in a polyvinyl alcohol (PVA) core layer. The morphology, chemical composition, mechanical and thermal properties of the nanofibrous membranes were characterized by FESEM/STEM, FTIR and DSC. The coaxial PVA-Ag CS NPs/PCL-Ph nanofibers (NFs) showed more controlled Ph release than PVA/PCL-Ph NFs. There was notable improvement in the morphology, thermal, mechanical, antibacterial properties and cytobiocompatibility of the fibers upon incorporation of Ph and Ag-CS NPs. The proposed core-shell PVA/PCL NFs represent promising scaffolds for tissue regeneration and wound healing by the effective dual delivery of phenytoin and Ag-CS NPs.
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