School of Sports Sciences (main campus), Zhengzhou University, Zhengzhou, Henan, 450001, PR China.
Department of Chemistry, Chemical and Biomedical Engineering, University of New Haven, West Haven, CT 06516, USA.
Nanomedicine (Lond). 2021 Oct;16(23):2117-2132. doi: 10.2217/nnm-2021-0182. Epub 2021 Sep 16.
Arthritis has been a heavy burden on the economy and society at large. Recently, nanomaterials that can convert near-infrared light into localized heat have demonstrated better targeting to arthritic joints, fewer side effects, ease of combined application with current therapeutics and enhanced efficacy for arthritis treatment. In this review, the authors summarize traditional thermal therapies for arthritis treatment and their molecular mechanisms and discuss the advantages and applications of nanotechnology-based thermal therapies for arthritis treatment. In conclusion, nanotechnology-based thermal therapies are effective alternatives or adjuvant strategies to the current pharmacological treatment of arthritis. Future clinical translation of thermal therapies could benefit from research elucidating their mechanisms and standardizing their parameters to optimize efficacy.
关节炎一直是经济和整个社会的沉重负担。最近,能够将近红外光转化为局部热的纳米材料已经显示出对关节炎关节更好的靶向性、更少的副作用、易于与当前疗法联合应用以及增强关节炎治疗效果。在这篇综述中,作者总结了传统的热疗治疗关节炎及其分子机制,并讨论了基于纳米技术的热疗治疗关节炎的优势和应用。总之,基于纳米技术的热疗是当前关节炎药物治疗的有效替代或辅助策略。阐明其机制并标准化其参数以优化疗效的研究将有助于热疗的未来临床转化。