Student Research Committee, Department of Food Science and Technology, National Nutrition and Food Technology Research Institute, Faculty of Nutrition Science and Food Technology, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Department of Food Safety and Hygiene, School of Public Health, Zanjan University of Medical Sciences, Zanjan, Iran.
Int J Biol Macromol. 2024 Jun;271(Pt 2):132743. doi: 10.1016/j.ijbiomac.2024.132743. Epub 2024 May 30.
Electrospinning is a technology for fabricating ultrafine fibers from natural or synthetic polymers that have novel or enhanced functional properties. These fibers have found applications in a diverse range of fields, including the food, medicine, cosmetics, agriculture, and chemical industries. However, the tendency for electrospun nanofibers to dissociate when exposed to certain environmental conditions limits many of their practical applications. The structural integrity and functional attributes of these nanofibers can be improved using physical and/or chemical crosslinking methods. This review article discusses the formation of polymeric nanofibers using electrospinning and then describes how different crosslinking methods can be used to enhance their mechanical, thermal, and biological attributes. Methods for optimizing the crosslinking reactions are discussed, including proper selection of crosslinker type and reaction conditions. Then, food, medical, and separation applications of crosslinked electrospun fibers are assessed, including in bone and skin tissue engineering, wound healing, drug delivery, air filtration, water filtration, oil removal, food packaging, food preservation, and bioactive delivery. Finally, areas where future research are needed are highlighted, as well as possible future applications of crosslinked nanofibers.
静电纺丝是一种从天然或合成聚合物制造具有新颖或增强功能特性的超细纤维的技术。这些纤维已在包括食品、医药、化妆品、农业和化学工业在内的多个领域得到应用。然而,静电纺纳米纤维在暴露于某些环境条件下解离的趋势限制了它们的许多实际应用。可以使用物理和/或化学交联方法来提高这些纳米纤维的结构完整性和功能特性。本文综述了使用静电纺丝形成聚合物纳米纤维,并描述了如何使用不同的交联方法来增强其机械、热和生物特性。讨论了优化交联反应的方法,包括交联剂类型和反应条件的适当选择。然后,评估了交联静电纺纤维在食品、医疗和分离方面的应用,包括在骨和皮肤组织工程、伤口愈合、药物输送、空气过滤、水过滤、除油、食品包装、食品保鲜和生物活性输送方面的应用。最后,强调了需要进一步研究的领域以及交联纳米纤维的可能未来应用。