Zhao Yue, Wang Yi, Wang Xiaoyu, Qi Ruilian, Yuan Huanxiang
Department of Chemistry, College of Chemistry and Materials Engineering, Beijing Technology and Business University, Beijing 100048, China.
School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China.
Nanomaterials (Basel). 2023 Aug 7;13(15):2269. doi: 10.3390/nano13152269.
Photothermal therapy has the advantages of non-invasiveness, low toxicity, simple operation, a broad spectrum of antibacterial ability, and non-proneness to developing drug resistance, which provide it with irreplaceable superiority in fighting against microbial infection. The effect of photothermal therapy is closely related to the choice of photothermal agent. Conjugated nanomaterials are potential candidates for photothermal agents because of their easy modification, excellent photothermal conversion efficiency, good photostability, and biodegradability. In this paper, the application of photothermal agents based on conjugated nanomaterials in photothermal antimicrobial treatment is reviewed, including conjugated small molecules, conjugated oligomers, conjugated polymers, and pseudo-conjugated polymers. At the same time, the application of conjugated nanomaterials in the combination of photothermal therapy (PTT) and photodynamic therapy (PDT) is briefly introduced. Finally, the research status, limitations, and prospects of photothermal therapy using conjugated nanomaterials as photothermal agents are discussed.
光热疗法具有非侵入性、低毒性、操作简单、抗菌谱广以及不易产生耐药性等优点,这使其在对抗微生物感染方面具有不可替代的优势。光热疗法的效果与光热剂的选择密切相关。共轭纳米材料因其易于修饰、优异的光热转换效率、良好的光稳定性和生物可降解性,成为光热剂的潜在候选材料。本文综述了基于共轭纳米材料的光热剂在光热抗菌治疗中的应用,包括共轭小分子、共轭低聚物、共轭聚合物和准共轭聚合物。同时,简要介绍了共轭纳米材料在光热疗法(PTT)和光动力疗法(PDT)联合应用中的情况。最后,讨论了以共轭纳米材料作为光热剂的光热疗法的研究现状、局限性和前景。