Combining Electrospinning and Photoinduced Reactions to Fabricate Cytocompatible and Antibacterial Ag Nanoparticle-Decorated Polymeric Membranes

IF 4.7 2区 化学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Parnian Kianfar, Sara Dalle Vacche, Roberta Bongiovanni, Chiara Mollea, Francesca Bosco, Ziba Najmi, Alessandro C. Scalia, Andrea Cochis and Alessandra Vitale*, 
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引用次数: 0

Abstract

Composite nanofibrous membranes hold significant potential for the development of innovative biomedical materials and applications as their properties can be tuned by combining the synergistic effects of the nanofiller and the polymer matrix. Moreover, the nanofibrous structure can further enhance this feature thanks to the extremely high functional surface area. In the present work, a simple and fast method for the preparation of electrospun composite membranes based on cross-linked poly(ethylene oxide) (PEO) nanofibers and silver nanoparticles (Ag NPs) is proposed. For this purpose, a precursor of the Ag NPs (i.e., AgNO3) is introduced into the aqueous solution of PEO in the presence of a suitable photoinitiator and a photo-cross-linker. Electrospinning of the solution is carried out, and the subsequent irradiation of the electrospun mat allows the simultaneous photoinduced cross-linking of PEO and the photoinduced synthesis of Ag NPs. The in situ generation of Ag NPs is confirmed through different characterization techniques (i.e., UV–vis spectroscopy, dynamic light scattering, and scanning electron microscopy). The structural, morphological, and mechanical properties of the resulting electrospun composite nanofibers are analyzed, and the effect of the content of the Ag NP precursor is evaluated. It is demonstrated that PEO fibers are chemically resistant and mechanically robust thanks to cross-linking, while Ag NPs induce significant antibacterial activity to the electrospun materials, which are also shown to be noncytotoxic by using both human fibroblasts and 3D-reconstructed skin equivalents. The proposed PEO-based nanofibrous mats decorated with Ag NPs thus exhibit promising potential as biomedical materials, especially for wound healing applications.

Abstract Image

结合静电纺丝和光诱导反应制备细胞相容性和抗菌银纳米粒子修饰聚合物膜
复合纳米纤维膜可以通过纳米填料和聚合物基质的协同作用来调节其性能,因此在创新生物医学材料和应用方面具有巨大的发展潜力。此外,由于纳米纤维结构具有极高的功能表面积,因此可以进一步增强这一特性。本文提出了一种基于交联聚环氧乙烷(PEO)纳米纤维和银纳米粒子(Ag NPs)的电纺丝复合膜的简单快速制备方法。为此,在合适的光引发剂和光交联剂的存在下,将银纳米粒子的前驱体(即AgNO3)引入PEO水溶液中。对溶液进行静电纺丝,随后对静电纺丝垫进行辐照,使PEO的光诱导交联和光诱导合成银纳米粒子同时进行。通过不同的表征技术(即紫外-可见光谱,动态光散射和扫描电子显微镜)证实了Ag NPs的原位生成。分析了电纺丝复合纳米纤维的结构、形态和力学性能,并评价了银NP前驱体含量的影响。研究表明,由于交联,PEO纤维具有耐化学性和机械坚固性,而Ag NPs对静电纺材料具有显著的抗菌活性,并且通过使用人类成纤维细胞和3d重建皮肤等效物也显示出无细胞毒性。因此,用银纳米粒子装饰的peo基纳米纤维垫作为生物医学材料,特别是在伤口愈合方面的应用具有很大的潜力。
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来源期刊
CiteScore
7.20
自引率
6.00%
发文量
810
期刊介绍: ACS Applied Polymer Materials is an interdisciplinary journal publishing original research covering all aspects of engineering, chemistry, physics, and biology relevant to applications of polymers. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrates fundamental knowledge in the areas of materials, engineering, physics, bioscience, polymer science and chemistry into important polymer applications. The journal is specifically interested in work that addresses relationships among structure, processing, morphology, chemistry, properties, and function as well as work that provide insights into mechanisms critical to the performance of the polymer for applications.
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