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多酶共表达双原子纳米酶通过激活干扰素-γ和靶向花生四烯酸代谢诱导级联免疫原性铁死亡。

Multi-enzyme Co-expressed Dual-Atom Nanozymes Induce Cascade Immunogenic Ferroptosis via Activating Interferon-γ and Targeting Arachidonic Acid Metabolism.

机构信息

State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, Jilin 130022, P. R. China.

University of Science and Technology of China, Hefei, Anhui 230026, P. R. China.

出版信息

J Am Chem Soc. 2023 Apr 26;145(16):8965-8978. doi: 10.1021/jacs.2c13689. Epub 2023 Apr 14.

Abstract

Immunotherapy is currently the most promising treatment strategy for long-term tumor regression. However, current cancer immunotherapy shows low response rates due to insufficient immunogenicity of tumor cells. Herein, we report a strategy to keep tumor cells highly immunogenic by triggering cascade immunogenic tumor ferroptosis. We developed a six-enzyme co-expressed nanoplatform: lipoxygenase (LOX) and phospholipase A2 (PLA2)-co-loaded FeCo/Fe-Co dual-metal atom nanozyme (FeCo/Fe-Co DAzyme/PL), which can not only induce initial immunogenic tumor ferroptosis through its own multi-enzyme mimetic activities but also up-regulate arachidonic acid (AA) expression to synergize with CD8 T cell-derived IFN-γ to induce ACSL4-mediated immunogenic tumor ferroptosis. During this process, FeCo/Fe-Co DAzyme/PL can induce lipid peroxidation (LPO) by efficiently generating reactive oxygen species (ROS) and depleting GSH and GPX4 at tumor sites. Additionally, free AA released from PLA2 catalysis is converted into arachidonyl-CoA under the activation of ACSL4 stimulated by IFN-γ, which is further incorporated into phospholipids on membranes and peroxidized with the participation of LOX. Consequently, FeCo/Fe-Co DAzyme/PL can promote irreversible cascade immunogenic ferroptosis through multiple ROS storms, GSH/GPX4 depletion, LOX catalysis, and IFN-γ-mediated ACSL4 activation, constructing an effective pathway to overcome the drawbacks of current immunotherapy.

摘要

免疫疗法是目前实现肿瘤长期消退的最有前途的治疗策略。然而,由于肿瘤细胞的免疫原性不足,目前的癌症免疫疗法反应率较低。在此,我们报告了一种通过触发级联免疫原性肿瘤铁死亡来保持肿瘤细胞高免疫原性的策略。我们开发了一种六酶共表达的纳米平台:脂氧合酶(LOX)和磷脂酶 A2(PLA2)共负载的 FeCo/Fe-Co 双金属原子纳米酶(FeCo/Fe-Co DAzyme/PL),它不仅可以通过自身的多种酶模拟活性诱导初始免疫原性肿瘤铁死亡,还可以上调花生四烯酸(AA)的表达,与 CD8 T 细胞衍生的 IFN-γ协同诱导 ACSL4 介导的免疫原性肿瘤铁死亡。在这个过程中,FeCo/Fe-Co DAzyme/PL 通过高效产生活性氧(ROS)和耗尽 GSH 和 GPX4 在肿瘤部位,诱导脂质过氧化(LPO)。此外,PLA2 催化释放的游离 AA 在 IFN-γ刺激下被 ACSL4 激活转化为花生烯酰-CoA,然后在 LOX 的参与下掺入膜上的磷脂并被过氧化。因此,FeCo/Fe-Co DAzyme/PL 可以通过多种 ROS 风暴、GSH/GPX4 耗竭、LOX 催化和 IFN-γ 介导的 ACSL4 激活来促进不可逆的级联免疫原性铁死亡,构建一种有效的途径来克服当前免疫疗法的缺点。

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