Wang Zizhen, Hou Zishuo, Wang Peiwen, Chen Fan, Luo Xianglin
College of Polymer Science and Engineering, Sichuan University, Chengdu, People's Republic of China.
State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu, People's Republic of China.
Regen Biomater. 2022 Apr 29;9:rbac026. doi: 10.1093/rb/rbac026. eCollection 2022.
Copper sulfide nanoparticles (CuS NPs) have shown great potential in various application fields, especially in biomedical engineering fields. CuS NPs, with the ability to actively capture and kill bacteria and without the worry of biocompatibility, will greatly expand their applications. Herein, a four-arm star thermo-sensitive polyisopropylacrylamide (4sPNIPAm) was used to modify CuS NPs (CuS-PNIPAm NPs). The obtained NPs displayed the controlled release of copper ions and higher photothermal conversion ability in comparison with contrast materials CuS-PEG NPs and CuS NPs. Aggregation of CuS-PNIPAm NPs at above 34°C resulted in capturing bacteria by forming the aggregates of NPs-bacteria. Both and co-cultured with CuS-PNIPAm NPs were completely killed upon near-infrared irradiation in minutes. Furthermore, CuS-PNIPAm NPs were verified to be a photothermal agent without toxic effect. In experiment, the NPs effectively killed the bacteria in the wound and accelerated the process of wound repairment. Overall, photothermal treatment by CuS-PNIPAm NPs demonstrates the ability to actively capture and kill bacteria, and has a potential in the treatment of infected skin and the regeneration of skin tissues. The therapy will exert a far-reaching impact on the regeneration of stubborn chronic wounds.
硫化铜纳米颗粒(CuS NPs)在各个应用领域都展现出了巨大潜力,尤其是在生物医学工程领域。CuS NPs能够主动捕获并杀死细菌,且无需担心生物相容性问题,这将极大地拓展其应用范围。在此,采用四臂星形热敏聚异丙基丙烯酰胺(4sPNIPAm)对CuS NPs进行修饰(CuS-PNIPAm NPs)。与对照材料CuS-PEG NPs和CuS NPs相比,所制备的纳米颗粒表现出铜离子的可控释放以及更高的光热转换能力。CuS-PNIPAm NPs在34°C以上发生聚集,通过形成纳米颗粒-细菌聚集体来捕获细菌。与CuS-PNIPAm NPs共培养的[具体细菌1]和[具体细菌2]在近红外照射数分钟后全部被杀死。此外,CuS-PNIPAm NPs被证实是一种无毒副作用的光热剂。在[具体动物]实验中,这些纳米颗粒有效杀灭了伤口处的细菌并加速了伤口愈合过程。总体而言,CuS-PNIPAm NPs的光热治疗展现出主动捕获并杀死细菌的能力,在感染皮肤治疗和皮肤组织再生方面具有潜力。该疗法将对顽固性慢性伤口的再生产生深远影响。