Anaya-Mancipe Javier Mauricio, Carlos Aline Luiza Machado, Bastos João Victor Dias de Assumpção, Tovar Ambel Elena Maria, Velasco-Díez Guillermo, Fialho Rosana Lopes, Thiré Rossana Mara da Silva Moreira
Program of Metallurgical and Materials Engineering-PEMM/COPPE, Universidade Federal do Rio de Janeiro (UFRJ), 21941-598 Rio de Janeiro, RJ, Brazil.
Department of Biochemistry and Molecular Biology, School of Biology, Universidad Complutense de Madrid-UCM, 28040 Madrid, Spain.
ACS Appl Mater Interfaces. 2025 Apr 23;17(16):23466-23483. doi: 10.1021/acsami.4c16675. Epub 2025 Apr 10.
The regeneration of skin injuries can be aided by tissue engineering strategies, which enable the recovery of the structural and functional integrity of the damaged tissue. The Solution Blow Spinning (SBS) technique has attracted the attention of researchers due to the production of nanofiber mats in a continuous process, which exhibit high porosity and the ability to deliver drugs locally. The objective of this work was to produce and encapsulate ibuprofen in mats of PCL/PEG as a fast-acting analgesic drug delivery system. Initially, beaded nanofiber structures were produced from PCL solutions in chloroform at 8% (w/v) and PCL/PEG solutions in mass ratios of 2:1 and 1:1. The influence of the PEG concentration, gas pressure (compressed air), and solution injection rate on the fibers' morphology was analyzed by SEM. Then, the best condition for the formation of PCL/PEG beaded fiber structure was selected (1:1, 137.90 kPa, and 7.2 mL/h) for the fabrication of the mat containing ibuprofen at proportions of 5, 15, and 30% by polymer mass (PCL/PEG). The SBS-spun mats demonstrated a remarkable swelling capacity of approximately 400%, with bead presence enabling a gradual release of ibuprofen within the first 5 h. Additionally, the wound-healing assay confirmed that ibuprofen-loaded PCL/PEG mats significantly promoted NF migration, suggesting their potential to accelerate the wound-healing process.
组织工程策略有助于皮肤损伤的再生,能够恢复受损组织的结构和功能完整性。溶液吹纺(SBS)技术因其能够连续生产纳米纤维垫而受到研究人员的关注,这种纳米纤维垫具有高孔隙率且能够局部给药。本研究的目的是制备含布洛芬的聚己内酯/聚乙二醇(PCL/PEG)垫,并将其作为速效止痛药物递送系统。最初,采用质量分数为8%(w/v)的PCL氯仿溶液以及质量比为2:1和1:1的PCL/PEG溶液制备了串珠状纳米纤维结构。通过扫描电子显微镜(SEM)分析了PEG浓度、气压(压缩空气)和溶液注射速率对纤维形态的影响。然后,选择形成PCL/PEG串珠状纤维结构的最佳条件(1:1、137.90 kPa和7.2 mL/h)来制备含布洛芬的垫,布洛芬在聚合物(PCL/PEG)中的比例分别为5%、15%和30%。SBS纺丝垫显示出约400%的显著溶胀能力,串珠的存在使布洛芬在前5小时内能够逐渐释放。此外,伤口愈合试验证实,负载布洛芬的PCL/PEG垫显著促进了中性粒细胞(NF)迁移,表明它们具有加速伤口愈合过程的潜力。