Lv Huaxin, Cui Sisi, Yang Qianwen, Song Xiaoyu, Wang Duo, Hu Junli, Zhou Yifa, Liu Yichun
Key Laboratory of UV-Emitting Materials and Technology (Northeast Normal University), Ministry of Education, Changchun, Jilin 130024, China.
School of Life Sciences, Northeast Normal University, Changchun, Jilin 130024, China.
Mater Sci Eng C Mater Biol Appl. 2021 Jan;118:111331. doi: 10.1016/j.msec.2020.111331. Epub 2020 Aug 9.
Silver nanoparticles (AgNPs) have a wide antimicrobial spectrum and low incidence of resistance. They have been widely incorporated into wound dressings for antimicrobial purpose. However, these wound dressings suffer from the accompanied cytotoxicity. It is important but challenging for them to reduce the cytotoxicity without compromising antimicrobial activity, while the affecting factors are unknown. In this work, we incorporated AgNPs into starch nanofiber mats with the in situ reduction method, and investigated the structure and property of the composite nanofiber mats in detail. We found that the cytotoxicity and antibacterial activity of the starch/AgNPs composite nanofiber mats are both affected by the release behavior of silver from the mats, while of various stages and governing factors. The cytotoxicity of the mats depends on the silver release rate at the early stage, which is governed by both the size and content of the AgNPs. The antibacterial activity is more related to the silver release rate at the later stage and is determined mainly by the content of AgNPs. By optimizing the size and content of AgNPs, we found a safe window and obtained starch/AgNPs composite nanofiber mats with good antibacterial activity and excellent cytocompatibility as well. The composite nanofiber mats also showed moderate wet strength (1-2 MPa), high liquid absorption capability (19-34 times of their own weights) and suitable vapor permeability [0.22-0.26 g/(cm·24 h)]. These starch/AgNPs composite nanofiber mats are ideal candidates for the treatment of infected and exuding wounds.
银纳米颗粒(AgNPs)具有广泛的抗菌谱且耐药发生率低。它们已被广泛用于抗菌目的的伤口敷料中。然而,这些伤口敷料存在伴随的细胞毒性。对于它们来说,在不影响抗菌活性的情况下降低细胞毒性既重要又具有挑战性,而影响因素尚不清楚。在这项工作中,我们采用原位还原法将AgNPs掺入淀粉纳米纤维垫中,并详细研究了复合纳米纤维垫的结构和性能。我们发现淀粉/AgNPs复合纳米纤维垫的细胞毒性和抗菌活性均受垫中银释放行为的影响,且处于不同阶段并有不同的控制因素。垫的细胞毒性取决于早期的银释放速率,这由AgNPs的尺寸和含量共同决定。抗菌活性在后期更与银释放速率相关,并且主要由AgNPs的含量决定。通过优化AgNPs的尺寸和含量,我们找到了一个安全窗口,并获得了具有良好抗菌活性和优异细胞相容性的淀粉/AgNPs复合纳米纤维垫。复合纳米纤维垫还表现出适度的湿强度(1 - 2兆帕)、高吸液能力(为自身重量的19 - 34倍)和合适的透气率[0.22 - 0.26克/(厘米·24小时)]。这些淀粉/AgNPs复合纳米纤维垫是治疗感染和渗出伤口的理想候选材料。