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用于相互增强催化和温和温度光热治疗效果的闭环级联纳米酶策略

Closed-loop cascade nanozyme strategy for mutually reinforced catalytic and mild-temperature photothermal therapeutic effects.

作者信息

Yang Fan, Yan Chunyu, Li Nannan, Jiang Xinxiu, Du Baojie, Bai Peirong, Li Liping, Zhang Ruiping

机构信息

Basic Medical College, Research Institute of Circadian Rhythm and Disease, Academy of Medical Sciences, Shanxi Medical University, Taiyuan, 030001, China.

Shanxi Bethune Hospital, Third Hospital of Shanxi Medical University, Shanxi Academy of Medical Sciences, Tongji Shanxi Hospital, Taiyuan, 030032, China.

出版信息

J Nanobiotechnology. 2025 Apr 4;23(1):267. doi: 10.1186/s12951-025-03320-2.

Abstract

Nanocatalysis coupled with photothermal therapy is a potent anti-cancer approach, yet its clinical utility is limited by low concentration of tumor substrate, redox interference, and risks of overheating normal tissues. Herein, we propose an innovative closed-loop nanozyme approach that leverages the synergistic effects of catalytic and mild photothermal therapy (mPTT) to address aforementioned challenges. The strategy features a folic acid-functionalized iron single-atom catalyst (FeNC-FA), designed to exhibit exceptional multienzymatic capabilities and an optimal photothermal response. In the system, the engineered FeNC-FA is capable of inducing reactive oxygen species (ROS) storm and depleting glutathione (GSH) in the specific tumor microenvironment (TME) to initiate ferroptosis. Concurrently, the accumulation of ROS effectively cleaves heat shock proteins (HSPs), thereby enhancing mPTT. An intriguing aspect is that the increased temperature within the TME further facilitates the conversion of HO to O, alleviating hypoxia and providing a positive feedback circuit to boost catalytic therapy. Additionally, the advanced photoacoustic (PA) imaging capabilities of FeNC-FA allow for self-monitoring of their accumulation at tumor sites, thereby guiding the mPTT process. Taken together, it provides a PA image-guided, mutually reinforced catalytic and mild photothermal synergistic tumor therapy both in vitro and in vivo. This targeted and synergistic strategy holds great promise for personalized medicine applications.

摘要

纳米催化与光热疗法相结合是一种有效的抗癌方法,但其临床应用受到肿瘤底物浓度低、氧化还原干扰以及正常组织过热风险的限制。在此,我们提出了一种创新的闭环纳米酶方法,该方法利用催化和温和光热疗法(mPTT)的协同效应来应对上述挑战。该策略的特点是一种叶酸功能化的铁单原子催化剂(FeNC-FA),旨在展现出卓越的多酶能力和最佳的光热响应。在该系统中,工程化的FeNC-FA能够在特定的肿瘤微环境(TME)中诱导活性氧(ROS)风暴并消耗谷胱甘肽(GSH),从而引发铁死亡。同时,ROS的积累有效地裂解热休克蛋白(HSPs),从而增强mPTT。一个有趣的方面是,TME内升高的温度进一步促进了HO向O的转化,缓解了缺氧状况,并提供了一个正反馈回路来增强催化治疗。此外,FeNC-FA先进的光声(PA)成像能力使其能够对其在肿瘤部位的积累进行自我监测,从而指导mPTT过程。综上所述,它提供了一种在体外和体内均由PA图像引导的、催化与温和光热协同增强的肿瘤治疗方法。这种靶向和协同的策略在个性化医学应用中具有巨大的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba4b/11969857/65e948780847/12951_2025_3320_Sch1_HTML.jpg

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