Fu Luo-Qin, Chen Xiao-Yi, Cai Mao-Hua, Tao Xiao-Hua, Fan Yi-Bin, Mou Xiao-Zhou
Department of General Surgery, Chun'an First People's Hospital (Zhejiang Provincial People's Hospital Chun'an Branch), Hangzhou, China.
Key Laboratory of Tumor Molecular Diagnosis and Individualized Medicine of Zhejiang Province, Zhejiang Provincial People's Hospital, People's Hospital of Hangzhou Medical College, Hangzhou, China.
Front Bioeng Biotechnol. 2020 Sep 17;8:576348. doi: 10.3389/fbioe.2020.576348. eCollection 2020.
Wounds present serious medical complications and their healing requires strategies that promote angiogenesis, deposition of collagen as well as re-epithelialization of wounds. Currently used conventional wound healing strategies have become less effective due to various issues associated with them. Thus, novel strategies are needed to be developed for early and effective healing of wounds. Metal-organic frameworks (MOFs), formed by linking of metal ions through organic bridging ligands, are highly tunable hybrid materials and have attracted more considerable scientific attention due to their charming and prominent properties, such as abundant pore structures and multiple functionalities. Surface engineering of MOFs with unique ligands can overcome issues associated with conventional wound healing methods, thus resulting in early and effective wound healing. This review has been undertaken to elaborate wound healing, and the use of surface engineered MOFs for effective and rapid wound healing. The process of wound healing will be discussed followed by a detailed review of recent literature for summarizing applications of surface engineered MOFs for wound healing. MOFs wound healing will be discussed in terms of their use as antibacterial agents, therapeutic delivery vehicles, and dressing systems in wound healing.
伤口会引发严重的医学并发症,其愈合需要促进血管生成、胶原蛋白沉积以及伤口重新上皮化的策略。由于目前使用的传统伤口愈合策略存在各种相关问题,其效果已变得不太理想。因此,需要开发新的策略来实现伤口的早期有效愈合。金属有机框架(MOF)是通过金属离子与有机桥联配体连接形成的,是高度可调节的杂化材料,因其具有丰富的孔结构和多种功能等迷人且突出的特性而吸引了更多的科学关注。用独特配体对MOF进行表面工程可以克服与传统伤口愈合方法相关的问题,从而实现早期有效的伤口愈合。本综述旨在阐述伤口愈合以及使用表面工程化的MOF实现有效快速的伤口愈合。将首先讨论伤口愈合的过程,然后详细回顾近期文献,以总结表面工程化MOF在伤口愈合中的应用。将从MOF作为抗菌剂、治疗递送载体和伤口愈合敷料系统的用途方面讨论MOF在伤口愈合中的应用。