Iran Polymer and Petrochemical Institute, PO Box: 14965/115, Tehran, Iran.
Biomed Mater. 2019 May 3;14(4):045007. doi: 10.1088/1748-605X/ab16b8.
Radical mediated photochemical thiol-yne click polymerization of thiol-terminated polyurethane prepolymers, with poly(ethylene glycol) soft segment at two different molecular weights, a propargyl terminated urethane crosslinker and silver salt was utilized to prepare versatile wound dressings containing well-dispersed Ag° nanoparticles produced via in situ reduction of Ag ions. The dressings with optimized chemical structure showed desirable fluid handling capacity (up to 4.84 g/10 cm d) to provide moist environment over damaged tissue. They were permeable to oxygen and carbon dioxide, therefore, the processes related to tissue regeneration of wound bed could be continued without problem. Their appropriate tensile strength (up to 3.87 MPa) and suitable conformability (less than 0.1% permanent set) enabled protection of damaged skin tissue from external physical forces during the healing process, even for wounds present at organs with a high degree of freedom. The proper cytocompatibility of the prepared dressings and their ability to support growth and proliferation of fibroblast cells as determined by wound scratch healing assay showed the potential utility of the dressings to motivate wound healing progression by migration of cells to the damaged area. In addition, these dressings with in situ formed silver nanoparticles exhibited promising antimicrobial activity against different bacterial and fungal strains, and consequently could encourage wound healing process by prevention from infection in the wound site.
采用两种不同分子量的聚乙二醇软段、炔丙基封端的聚氨酯交联剂和银盐,通过自由基介导的光化学硫醇-炔点击聚合,对端巯基聚氨酯预聚物进行聚合,制备了含有均匀分散的 Ag°纳米颗粒的多功能伤口敷料,Ag°纳米颗粒是通过原位还原 Ag 离子生成的。具有优化化学结构的敷料具有理想的流体处理能力(高达 4.84 g/10 cm²/d),可为受损组织提供湿润的环境。它们对氧气和二氧化碳具有渗透性,因此,伤口床组织再生的相关过程可以在没有问题的情况下继续进行。其适当的拉伸强度(高达 3.87 MPa)和合适的顺应性(小于 0.1%的永久变形)使它们能够在愈合过程中保护受损的皮肤组织免受外部物理力的影响,即使是在具有高度自由度的器官上的伤口也是如此。通过划痕愈合试验确定的制备敷料的适当细胞相容性及其支持成纤维细胞生长和增殖的能力表明,这些敷料具有通过细胞迁移到受损区域来促进伤口愈合进展的潜力。此外,这些敷料中形成的原位银纳米粒子具有对抗不同细菌和真菌菌株的良好抗菌活性,因此可以通过防止伤口部位感染来促进伤口愈合过程。