Li Hao-Xuan, Zhao Kun-Chi, Jiang Jia-Jia, Zhu Qing-San
Department of Spine Surgery, China-Japan Union Hospital of Jilin University, N.126 Xiantai Street, Changchun, 130033, Jilin, People's Republic of China.
J Biol Eng. 2023 Jan 30;17(1):8. doi: 10.1186/s13036-023-00328-w.
Hydrogels, also known as three-dimensional, flexible, and polymer networks, are composed of natural and/or synthetic polymers with exceptional properties such as hydrophilicity, biocompatibility, biofunctionality, and elasticity. Researchers in biomedicine, biosensing, pharmaceuticals, energy and environment, agriculture, and cosmetics are interested in hydrogels. Hydrogels have limited adaptability for complicated biological information transfer in biomedical applications due to their lack of electrical conductivity and low mechanical strength, despite significant advances in the development and use of hydrogels. The nano-filler-hydrogel hybrid system based on supramolecular interaction between host and guest has emerged as one of the potential solutions to the aforementioned issues. Black phosphorus, as one of the representatives of novel two-dimensional materials, has gained a great deal of interest in recent years owing to its exceptional physical and chemical properties, among other nanoscale fillers. However, a few numbers of publications have elaborated on the scientific development of black phosphorus hybrid hydrogels extensively. In this review, this review thus summarized the benefits of black phosphorus hybrid hydrogels and highlighted the most recent biological uses of black phosphorus hybrid hydrogels. Finally, the difficulties and future possibilities of the development of black phosphorus hybrid hydrogels are reviewed in an effort to serve as a guide for the application and manufacture of black phosphorus -based hydrogels. Recent applications of black phosphorus hybrid hydrogels in biomedicine.
水凝胶,也被称为三维、柔性聚合物网络,由天然和/或合成聚合物组成,具有亲水性、生物相容性、生物功能性和弹性等优异特性。生物医学、生物传感、制药、能源与环境、农业和化妆品领域的研究人员都对水凝胶感兴趣。尽管水凝胶的开发和应用取得了重大进展,但由于其缺乏导电性和机械强度低,在生物医学应用中对复杂生物信息传递的适应性有限。基于主客体超分子相互作用的纳米填料-水凝胶杂化体系已成为解决上述问题的潜在方案之一。作为新型二维材料的代表之一,黑磷近年来因其优异的物理和化学性质以及其他纳米级填料而备受关注。然而,关于黑磷杂化水凝胶科学发展的详细阐述的出版物数量较少。在本综述中,总结了黑磷杂化水凝胶的优势,并突出了其最新的生物学用途。最后,对黑磷杂化水凝胶开发中的困难和未来可能性进行了综述,以期为基于黑磷的水凝胶的应用和制造提供指导。黑磷杂化水凝胶在生物医学中的最新应用。