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Surface modification of core-shell silk/PVA nanofibers by oxygen dielectric barrier discharge plasma: Studies of physico-chemical properties and drug release behavior

机译:氧介电势垒放电等离子体对核-壳蚕丝/ PVA纳米纤维的表面改性:理化性质和药物释放行为的研究

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Bombyx mori silk fibroin (BMSF), a natural protein polymer, has increasingly gained research interest as promising biomaterial in drug delivery application due to its excellent biological and physiochemical properties. In this study, antibiotic loaded silk/PVA core-shell nanofibers has been prepared followed by surface modification using homogeneous oxygen (O-2) dielectric barrier discharge (DBD) plasma at atmospheric pressure. Polyvinyl alcohol (PVA) is used as the shell material whereas amoxicillin trihydrate is loaded into the silk solution (AMOXBMSF) and the mixture is used as core material for fabricating core-shell nanofibers. O-2 DBD plasma treatment induces surface hydrophilicity in AMOX-BMSF/PVA nanofibers due to incorporation of polar functional groups onto the surface as revealed from X-ray photoelectron spectroscopy (XPS) analyses. The O-2 DBD plasma treatment facilitates formation of hydrogen bonds on the surface of the nanofibers resulting in better mechanical behavior of the nanofibers. The DBD plasma treated nanofibers show relatively faster biphasic drug profile than the untreated nanofibers with prolonged antibacterial activities against Gram-negative Escherichia coll. and Grampositive Staphylococcus aureus bacteria. The results demonstrate that O-2 DBD plasma surface modified AMOXBMSF/PVA nanofibers can be explored as mechanically enhanced wound dressing in treatment of skin and wound Infections.
机译:家蚕丝素蛋白(BMSF)是一种天然蛋白质聚合物,由于其优异的生物学和理化特性,作为有前途的生物材料在药物递送应用中越来越受到研究的兴趣。在这项研究中,先制备了载有抗生素的丝/ PVA核壳纳米纤维,然后在大气压下使用均相氧(O-2)介质阻挡放电(DBD)等离子体进行了表面改性。聚乙烯醇(PVA)被用作外壳材料,而三水合阿莫西林被装载到丝溶液(AMOXBMSF)中,混合物被用作制造核壳纳米纤维的核材料。 X射线光电子能谱(XPS)分析显示,由于极性官能团的结合,O-2 DBD等离子体处理在AMOX-BMSF / PVA纳米纤维中诱导了表面亲水性。 O-2 DBD等离子体处理有助于在纳米纤维表面上形成氢键,从而使纳米纤维具有更好的机械性能。与未经处理的纳米纤维相比,经DBD等离子体处理的纳米纤维显示出相对更快的双相药物曲线,并且对革兰氏阴性大肠杆菌具有延长的抗菌活性。和革兰氏阳性金黄色葡萄球菌。结果表明,O-2 DBD等离子体表面改性的AMOXBMSF / PVA纳米纤维可作为机械增强的伤口敷料用于皮肤和伤口感染的治疗。

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