Fang Zhuluni, Zhou Qingyang, Zhang Wenbo, Wang Junyi, Liu Yihan, Yu Miao, Qiu Yunfeng, Ma Zhuo, Liu Shaoqin
School of Medicine and Health, Harbin Institute of Technology, Harbin 150080, China.
School of Life Science and Technology, Harbin Institute of Technology, Harbin 150001, China.
Materials (Basel). 2023 Dec 10;16(24):7583. doi: 10.3390/ma16247583.
In response to the trend of drug-resistant and super bacteria, the existing single antibacterial methods are not sufficient to kill bacteria, and the development of multifunctional antibacterial nanomaterials is urgent. Our study aims to construct copper-doped polydopamine-coated TiCT (CuPDA@TiCT) with an enhanced photothermal property and Fenton-like activity. The nanocomposite hydrogel consisting of CuPDA@TiCT and alginate can improve the antioxidant activity of two-dimensional MXene nanosheets by coating them with a thin layer of PDA nanofilm. Meanwhile, Cu ions are adsorbed through the coordination of PDA-rich oxygen-containing functional groups and amino groups. Calcium ions were further used to crosslink sodium alginate to obtain antibacterial hydrogel materials with combined chemotherapy and photothermal therapy properties. The photothermal conversion efficiency of CuPDA@TiCT is as high as 57.7% and the antibacterial rate of reaches 96.12%. The photothermal effect leads to oxidative stress in bacteria, increases cell membrane permeability, and a high amount of ROS and copper ions enter the interior of the bacteria, causing protein denaturation and DNA damage, synergistically leading to bacterial death. Our study involves a multifunctional synergistic antibacterial nanodrug platform, which is conducive to the development of high-performance antibacterial agents and provides important research ideas for solving the problem of drug-resistant bacteria.
针对耐药菌和超级细菌的趋势,现有的单一抗菌方法不足以杀死细菌,多功能抗菌纳米材料的开发迫在眉睫。我们的研究旨在构建具有增强光热性能和类芬顿活性的铜掺杂聚多巴胺包覆的TiCT(CuPDA@TiCT)。由CuPDA@TiCT和藻酸盐组成的纳米复合水凝胶可以通过用一层薄薄的PDA纳米膜包覆二维MXene纳米片来提高其抗氧化活性。同时,通过富含PDA的含氧官能团与氨基的配位作用吸附铜离子。进一步用钙离子使海藻酸钠交联,得到具有化疗和光热治疗联合性能的抗菌水凝胶材料。CuPDA@TiCT的光热转换效率高达57.7%,抗菌率达到96.12%。光热效应导致细菌内的氧化应激,增加细胞膜通透性,大量活性氧和铜离子进入细菌内部,导致蛋白质变性和DNA损伤,协同导致细菌死亡。我们的研究涉及一个多功能协同抗菌纳米药物平台,有利于高性能抗菌剂的开发,并为解决耐药菌问题提供重要的研究思路。