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基于乳酸氧化酶的多功能人工过氧化物酶体作为肿瘤治疗的自级联增强活性氧放大器

Multifunctional Artificial Peroxisome Basing on Lactate Oxidase as a Self-Cascade Enhancing Active Oxygen Amplifier for Tumor Therapy.

作者信息

Wang Huihui, Huang Xueping, Gao Ran, Li Ke, Li Dandan, Xu Zhuobin, Ling Zemin, Pan Chun, Gao Lizeng, Chen Hao

机构信息

Institute of Translational Medicine, Medical College, Yangzhou University, Yangzhou 225001, China.

Jiangsu Key Laboratory of Integrated Traditional Chinese and Western Medicine for Prevention and Treatment of Senile Diseases, Yangzhou University, Yangzhou 225001, China.

出版信息

ACS Appl Mater Interfaces. 2025 Feb 5;17(5):7275-7290. doi: 10.1021/acsami.4c17559. Epub 2025 Jan 22.

Abstract

The intricacy, diversity, and heterogeneity of cancers make research focus on developing multimodal synergistic therapy strategies. Herein, an oxygen (O) self-feeding peroxisomal lactate oxidase (LOX)-based LOX-Ce6-Mn (LCM) was synthesized using a biomineralization approach, which was used for cascade chemodynamic therapy (CDT)/photodynamic therapy (PDT) combination therapies through dual depletion of lactate (Lac) and reactive oxygen species (ROS) generation. After endocytosis into tumor cells, the endogenous hydrogen peroxide (HO) can be converted to O by the catalase-like (CAT) activity of LCM, which can facilitate the catalytic reaction of LOX to consume more Lac and alleviate tumor hypoxia to enhance the generation of singlet oxygen (O) upon light irradiation. In addition, the HO produced by LOX catalysis and oxidase-like (OXD) activity of LCM can be catalyzed into highly toxic hydroxyl radicals (OH) via the Fenton-like reaction, enhancing oxidative damage to tumor cells. Both in vitro and in vivo experiments confirmed that LCM significantly promoted ROS accumulation and effectively inhibited tumor growth by inducing tumor cell autophagy under the combined effect of Lac depletion and CDT with PDT. Therefore, integrally designed LCM for reprogramming metabolism and the tumor microenvironment offers a promising multimodal strategy for tumor treatments.

摘要

癌症的复杂性、多样性和异质性使得研究聚焦于开发多模式协同治疗策略。在此,通过生物矿化方法合成了一种基于氧(O)自供体过氧化物酶体乳酸氧化酶(LOX)的LOX-Ce6-Mn(LCM),其通过乳酸(Lac)的双重消耗和活性氧(ROS)的产生用于级联化学动力疗法(CDT)/光动力疗法(PDT)联合治疗。内吞进入肿瘤细胞后,内源性过氧化氢(HO)可通过LCM的过氧化氢酶样(CAT)活性转化为O,这可促进LOX的催化反应以消耗更多的Lac并缓解肿瘤缺氧,从而在光照下增强单线态氧(O)的产生。此外,LCM的LOX催化产生的HO和氧化酶样(OXD)活性可通过类芬顿反应催化为高毒性的羟基自由基(OH),增强对肿瘤细胞的氧化损伤。体外和体内实验均证实,在Lac消耗以及CDT与PDT的联合作用下,LCM通过诱导肿瘤细胞自噬显著促进ROS积累并有效抑制肿瘤生长。因此,整体设计的用于重编程代谢和肿瘤微环境的LCM为肿瘤治疗提供了一种有前景的多模式策略。

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