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静电纺丝为医疗设备的绿色高效抗菌涂层提供了机会。

Electrospinning Enables Opportunity for Green and Effective Antibacterial Coatings of Medical Devices.

作者信息

Caporalini Saverio, Azimi Bahareh, Zergat Samir, Ansari Chaharsoughi Mahdi, Maleki Homa, Batoni Giovanna, Danti Serena

机构信息

Department of Translational Research and New Technologies in Medicine and Surgery, University of Pisa, Via Savi 10, 56123 Pisa, Italy.

Consorzio Interuniversitario Nazionale per la Scienza e Tecnologia dei Materiali (INSTM), Via Giusti 9, 50122 Florence, Italy.

出版信息

J Funct Biomater. 2025 Jul 6;16(7):249. doi: 10.3390/jfb16070249.

Abstract

The growing antimicrobial resistance and the increasing environmental concerns associated with conventional antibacterial agents have prompted a search for more effective and sustainable alternatives. Biopolymer-based nanofibers are promising candidates to produce environment-friendly antibacterial coatings, owing to their high surface-to-volume ratio, structural adaptability, and tunable porosity. These features make them particularly well-suited for delivering antimicrobial agents in a controlled manner and for physically modifying the surface of medical devices. This review critically explores recent advances in the use of electrospun fibers enhanced with natural antimicrobial agents as eco-friendly surface coatings. The mechanisms of antibacterial action, key factors affecting their efficacy, and comparisons with conventional antibacterial agents are discussed herein. Emphasis is placed on the role of a "green electrospinning" process, which utilizes bio-based materials and nontoxic solvents, to enable coatings able to better combat antibiotic-resistant pathogens. Applications in various clinical settings, including implants, wound dressings, surgical textiles, and urinary devices, are explored. Finally, the environmental benefits and prospects for the scalability and sustainability of green coatings are discussed to underscore their relevance to next-generation, sustainable solutions in healthcare.

摘要

日益增长的抗菌耐药性以及与传统抗菌剂相关的环境问题日益突出,促使人们寻找更有效、更可持续的替代品。基于生物聚合物的纳米纤维因其高比表面积、结构适应性和可调孔隙率,有望成为生产环保抗菌涂层的候选材料。这些特性使其特别适合以可控方式递送抗菌剂,并对医疗器械表面进行物理改性。本综述批判性地探讨了使用天然抗菌剂增强的电纺纤维作为生态友好型表面涂层的最新进展。本文讨论了抗菌作用机制、影响其疗效的关键因素以及与传统抗菌剂的比较。重点介绍了“绿色电纺”工艺的作用,该工艺利用生物基材料和无毒溶剂,使涂层能够更好地对抗耐抗生素病原体。探讨了其在各种临床环境中的应用,包括植入物、伤口敷料、手术纺织品和泌尿器械。最后,讨论了绿色涂层的环境效益以及可扩展性和可持续性的前景,以强调它们与医疗保健领域下一代可持续解决方案的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f6e/12295855/08959d71315b/jfb-16-00249-g003.jpg

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