海绵
伤口愈合
材料科学
复合数
纳米材料
止血
甲壳素
纳米技术
壳聚糖
光热治疗
生物医学工程
化学
复合材料
医学
外科
生物
生物化学
植物
作者
Shanshan Li,Bin Gu,Xiaoyun Li,Shuwei Tang,Lu Zheng,Eduardo Ruiz‐Hitzky,Zeyu Sun,Changliang Xu,Xiaoying Wang
标识
DOI:10.1002/adhm.202102367
摘要
This study shows the effective use of MXene-based nanomaterials to improve the performance of biocomposite sponges in wound healing. In this way, diverse chitin/MXene composite sponges are fabricated by incorporating MXene-based nanomaterials with various morphology (accordion-shaped, intercalated, single-layer, gold nanoparticles (AuNPs)-loaded single-layer) into the network of chitin sponge (CH), which can prevent massive blood losses and promote the healing process of bacterial-infected wounds. With the addition of MXene-based nanomaterials, the hemostatic efficacy of CH is enhanced due to the improved hemophilicity and accelerated blood coagulation kinetics. Furthermore, the composite sponges show a predominant antibacterial activity through the synergy between the capture and the photothermal effects. Importantly, the addition of AuNPs to composite sponges further improves hemostatic performance and promotes normal skin cell migration to heal the infected wound, achieving wound closure rates of 84% on day 9. These initial studies expand the applications of MXene-based nanomaterials in biomedical fields.
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