基于金属酚网络的铁蛋白诱导和免疫疗法级联循环,用于结直肠癌的联合治疗

Exploration Pub Date : 2024-05-15 DOI:10.1002/exp.20230117
Yuwei Li, Yuxi Duan, Yunyi Li, Yuan Gu, Lu Zhou, Zhongting Xiao, Xinying Yu, Yanjun Cai, Erzhuo Cheng, Qianqian Liu, Yong Jiang, Quan Yang, Feng Zhang, Qi Lei, Bin Yang
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摘要

癌症免疫疗法是目前最有前景的肿瘤治疗方法,而铁氧体能激活癌症的免疫原性,增强细胞免疫反应。然而,受限于复杂的肿瘤微环境,丰富的谷胱甘肽(GSH)和较低的活性氧(ROS)严重削弱了铁凋亡和免疫反应。在本文中,作者报告了光热金属酚网络(MPNs)通过降低谷胱甘肽(GSH)水平来提供丁硫磺酰亚胺(BSO),然后将肿瘤细胞困在铁蛋白沉降和免疫治疗级联循环中,从而消除结直肠癌(CRC)。涂有模型抗原卵清蛋白的 MPNs 可在肿瘤部位聚集,在近红外照射下介导免疫原性细胞死亡(ICD),并启动杀瘤免疫。然后,活化的 CD8+ T 细胞会释放 IFN-γ,抑制 GPX4,促进 Fe3+ 和 BSO 诱导的免疫原性铁中毒。最后,瘤间和瘤内水平的肿瘤细胞将参与到以铁蛋白沉积为主的癌症-免疫循环中,从而根除 CRC,从而在原发性和远处肿瘤模型中取得显著的治疗效果。总之,该策略采用光热纳米平台快速刺激 ICD 并抑制氧化防御系统,为显著放大铁肽酶诱导和免疫治疗的 "级联循环 "治疗 CRC 提供了一种可行的方法。
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Cascade loop of ferroptosis induction and immunotherapy based on metal‐phenolic networks for combined therapy of colorectal cancer
Cancer immunotherapy is the most promising method for tumor therapy, while ferroptosis could activate the immunogenicity of cancer and strengthen the cellular immune response. However, limited by the complex tumor microenvironment, the abundant glutathione (GSH) and low reactive oxygen species (ROS) seriously weaken ferroptosis and the immune response. Herein, the authors report photothermal metal‐phenolic networks (MPNs) supplied with buthionine sulfoximine (BSO) by reducing levels of GSH and then trapping the tumor cells in the ferroptosis and immunotherapy cascade loop to eliminate colorectal cancer (CRC). The MPNs coated with the model antigen ovalbumin can accumulate at the tumor site, mediate immunogenic cell death (ICD) under NIR irradiation, and initiate tumoricidal immunity. Then the activated CD8+ T cells would release IFN‐γ to inhibit GPX4 and promote the immunogenic ferroptosis induced by Fe3+ and BSO. Finally, the tumor cells at intertumoral and intratumoral levels would be involved in the ferroptosis‐dominated cancer‐immunity circle for CRC eradication, resulting in outstanding therapeutic outcomes in both primary and distant tumor models. Overall, this strategy employs a photothermal nanoplatform to rapidly stimulate ICD and restrain the oxidation defense system, which provides a promising approach to significantly amplify the “cascade loop” of ferroptosis induction and immunotherapy for treatment of CRC.
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