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用于可控药物递送和光促进感染伤口愈合的蛋黄壳型银纳米线@非晶态金属有机框架

Yolk-shelled silver nanowire@amorphous metal-organic framework for controlled drug delivery and light-promoting infected wound healing.

作者信息

Yang Yueyan, Sun Xu, Wang Shengyan, Tang Zhe, Luo Siyuan, Shi Jianjun, Zhuo Xiaolu, Zhu Jinjin, Zhang Han, Kong Xiangdong

机构信息

Institute for Smart Biomedical Materials, School of Materials Science & Engineering, Zhejiang Sci-Tech University, Hangzhou 310000, PR China.

Zhejiang-Mauritius Joint Research Center for Biomaterials and Tissue Engineering, Zhejiang Sci-Tech University, Hangzhou 310018, PR China.

出版信息

Regen Biomater. 2024 May 22;11:rbae056. doi: 10.1093/rb/rbae056. eCollection 2024.

Abstract

Bacteria-infected wounds healing has been greatly hindered by antibiotic resistance and persistent inflammation. It is crucial to develop multifunctional nanocomposites that possess effective antibacterial properties and can simultaneously accelerate the wound healing process to overcome the above challenges. Herein, we prepared a yolk-shell structured Ag nanowires (NWs)@amorphous hollow ZIF-67 by etching ZIF-67 onto the Ag NWs for infected wound healing for the first time. The etched hollow structure of amorphous ZIF-67 in the nanocomposite makes it a promising platform for loading healing-promoting drugs. We extensively studied the antibacterial and healing-promoting properties of the curcumin (CCM)-loaded nanocomposite (Ag NWs@C-HZ67). Ag NWs, being noble metal materials with plasmonic effects, can absorb a broad range of natural light and convert it to thermal energy. This photothermal conversion further improves the release of antibacterial components and wound healing drugs when exposed to light. During the healing process of an infected wound, Ag and Co ions were released from Ag NWs@C-HZ67 upon direct contact with the wound exudate and under the influence of light irradiation. Simultaneously, the loaded CCM leaked out to repair the infected wound. The minimum inhibitory concentrations of the Ag NWs@C-HZ67 groups against and bacteria decreased to 3 and 3 μg ml when exposed to white light. Furthermore, an assessment of infected wound healing demonstrated that combining Ag NWs@C-HZ67 with light significantly accelerated the wound healing process, achieving 70% healing by the 6th day and almost complete healing by the 8th day. This advanced nanocomposite, consisting of components that possess antibacterial and growth-promoting properties, offers a safe, effective and clinically-translatable solution for accelerating the healing process of infected wounds.

摘要

抗生素耐药性和持续炎症严重阻碍了细菌感染伤口的愈合。开发具有有效抗菌性能并能同时加速伤口愈合过程的多功能纳米复合材料对于克服上述挑战至关重要。在此,我们首次通过将ZIF-67蚀刻到银纳米线(NWs)上制备了一种用于感染伤口愈合的蛋黄壳结构银纳米线(NWs)@非晶态中空ZIF-67。纳米复合材料中非晶态ZIF-67的蚀刻中空结构使其成为负载促进愈合药物的有前景的平台。我们广泛研究了负载姜黄素(CCM)的纳米复合材料(Ag NWs@C-HZ67)的抗菌和促进愈合性能。银纳米线作为具有等离子体效应的贵金属材料,能吸收广泛的自然光并将其转化为热能。这种光热转换在光照时进一步改善了抗菌成分和伤口愈合药物的释放。在感染伤口的愈合过程中,Ag NWs@C-HZ67与伤口渗出液直接接触并在光照影响下释放出Ag和Co离子。同时,负载的CCM泄漏出来修复感染伤口。当暴露于白光时,Ag NWs@C-HZ67组对两种细菌的最低抑菌浓度降至3和3μg/ml。此外,对感染伤口愈合的评估表明,将Ag NWs@C-HZ67与光结合可显著加速伤口愈合过程,在第6天实现70%的愈合,在第8天几乎完全愈合。这种由具有抗菌和促进生长特性的成分组成的先进纳米复合材料为加速感染伤口的愈合过程提供了一种安全、有效且可临床转化的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb04/11153340/8c5c817830da/rbae056f7.jpg

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