Domingues Joana M, Miranda Catarina S, Homem Natália C, Felgueiras Helena P, Antunes Joana C
Centre for Textile Science and Technology (2C2T), Campus of Azurém, University of Minho, 4800-058 Guimarães, Portugal.
Simoldes Plastics S.A., Rua Comendador António da Silva Rodrigues 165, 3720-193 Oliveira de Azeméis, Portugal.
Biomedicines. 2023 Jun 29;11(7):1862. doi: 10.3390/biomedicines11071862.
The potential of nanoparticles as effective drug delivery systems combined with the versatility of fibers has led to the development of new and improved strategies to help in the diagnosis and treatment of diseases. Nanoparticles have extraordinary characteristics that are helpful in several applications, including wound dressings, microbial balance approaches, tissue regeneration, and cancer treatment. Owing to their large surface area, tailor-ability, and persistent diameter, fibers are also used for wound dressings, tissue engineering, controlled drug delivery, and protective clothing. The combination of nanoparticles with fibers has the power to generate delivery systems that have enhanced performance over the individual architectures. This review aims at illustrating the main possibilities and trends of fibers functionalized with nanoparticles, focusing on inorganic and organic nanoparticles and polymer-based fibers. Emphasis on the recent progress in the fabrication procedures of several types of nanoparticles and in the description of the most used polymers to produce fibers has been undertaken, along with the bioactivity of such alliances in several biomedical applications. To finish, future perspectives of nanoparticles incorporated within polymer-based fibers for clinical use are presented and discussed, thus showcasing relevant paths to follow for enhanced success in the field.
纳米颗粒作为有效的药物递送系统的潜力,再加上纤维的多功能性,催生了有助于疾病诊断和治疗的新型改良策略。纳米颗粒具有非凡的特性,有助于多种应用,包括伤口敷料、微生物平衡方法、组织再生和癌症治疗。由于其大表面积、可定制性和持久直径,纤维也用于伤口敷料、组织工程、控释药物递送和防护服。纳米颗粒与纤维的结合能够产生性能优于单个结构的递送系统。本综述旨在阐述用纳米颗粒功能化的纤维的主要可能性和趋势,重点关注无机和有机纳米颗粒以及聚合物基纤维。文中强调了几种类型纳米颗粒制造工艺的最新进展以及用于生产纤维的最常用聚合物的描述,同时还介绍了此类组合在多种生物医学应用中的生物活性。最后,展示并讨论了基于聚合物的纤维中掺入纳米颗粒用于临床的未来前景,从而展示了该领域为取得更大成功而需遵循的相关路径。