Liang Chengzhi, He Jing, Cao Yuan, Liu Guoming, Zhang Chengdong, Qi Zhiping, Fu Chuan, Hu Yanling
Department of Orthopedic Surgery, The Affiliated Hospital of Qingdao University, Shandong, 266000, PR China.
Department of Pediatric Surgery, The Affiliated Hospital of Qingdao University, Shandong, 266000, PR China.
J Biol Eng. 2023 Jun 8;17(1):39. doi: 10.1186/s13036-023-00355-7.
Skin is the largest organ of the human body. It plays a vital role as the body's first barrier: stopping chemical, radiological damage and microbial invasion. The importance of skin to the human body can never be overstated. Delayed wound healing after a skin injury has become a huge challenge in healthcare. In some situations, this can have very serious and even life-threatening effects on people's health. Various wound dressings have been developed to promote quicker wound healing, including hydrogels, gelatin sponges, films, and bandages, all work to prevent the invasion of microbial pathogens. Some of them are also packed with bioactive agents, such as antibiotics, nanoparticles, and growth factors, that help to improve the performance of the dressing it is added to. Recently, bioactive nanoparticles as the bioactive agent have become widely used in wound dressings. Among these, functional inorganic nanoparticles are favored due to their ability to effectively improve the tissue-repairing properties of biomaterials. MXene nanoparticles have attracted the interest of scholars due to their unique properties of electrical conductivity, hydrophilicity, antibacterial properties, and biocompatibility. The potential for its application is very promising as an effective functional component of wound dressings. In this paper, we will review MXene nanoparticles in skin injury repair, particularly its synthesis method, functional properties, biocompatibility, and application.
皮肤是人体最大的器官。它作为身体的第一道屏障发挥着至关重要的作用:阻止化学、放射性损伤以及微生物入侵。皮肤对人体的重要性无论怎样强调都不为过。皮肤损伤后伤口愈合延迟已成为医疗保健领域的一大挑战。在某些情况下,这可能会对人们的健康产生非常严重甚至危及生命的影响。人们已经开发出各种伤口敷料以促进伤口更快愈合,包括水凝胶、明胶海绵、薄膜和绷带,它们都致力于防止微生物病原体的入侵。其中一些还含有生物活性剂,如抗生素、纳米颗粒和生长因子,这些有助于提高所添加敷料的性能。近来,作为生物活性剂的生物活性纳米颗粒已广泛应用于伤口敷料。其中,功能性无机纳米颗粒因其能够有效改善生物材料的组织修复性能而受到青睐。MXene纳米颗粒因其独特的导电性、亲水性、抗菌性能和生物相容性而引起了学者们的关注。作为伤口敷料的有效功能成分,其应用潜力非常广阔。在本文中,我们将综述MXene纳米颗粒在皮肤损伤修复中的应用,特别是其合成方法、功能特性、生物相容性及应用。