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微波控制臭氧释放纳米系统提高三阴性乳腺癌免疫检查点阻断疗效

Improvement of TNBC immune checkpoint blockade with a microwave-controlled ozone release nanosystem.

机构信息

Laboratory of Integrative Medicine, Clinical Research Center for Breast, State Key Laboratory of Biotherapy, West China Hospital, Sichuan University and Collaborative Innovation Center, Chengdu, Sichuan 610041, PR China; Department of Ultrasound & Laboratory of Ultrasound Medicine, West China Hospital, Sichuan University, Chengdu, Sichuan 610041, PR China.

Laboratory of Integrative Medicine, Clinical Research Center for Breast, State Key Laboratory of Biotherapy, West China Hospital, Sichuan University and Collaborative Innovation Center, Chengdu, Sichuan 610041, PR China.

出版信息

J Control Release. 2022 Nov;351:954-969. doi: 10.1016/j.jconrel.2022.09.053. Epub 2022 Oct 12.

Abstract

Despite revolutionary achievements have been made in clinical cancer therapy, the immune checkpoint blockade regimen still presents limited efficacy on tumors lack of neoantigens exposure. Here, we designed and synthesized an on-demand microwave-controlled ozone release nanosystem to specifically generate reactive oxygen species in tumor mass. By taking advantage of iRGD modification, the synthesized nanosystem can be specifically enriched in the tumor microenvironment and subsequently internalized by tumor cells. Triggered by the low-power microwave, ozone was released from the nanocarriers and inhibited tumor cell growth in vitro and in vivo. Molecular mechanism investigation further unraveled that the released-ozone induced cytolytic cell death through the rapid generation of reactive oxygen species such as hydroxyl radical. The tumor-specific neoantigen derived from this immunogenic cell death promoted cytotoxic T-lymphocytes infiltration, which provided a fundament for immune checkpoint blockade therapy. In the triple-negative breast cancer animal model, tumor-specific delivery of ozone significantly improved the systematical anti-tumor efficacy of the PD-1 blockade antibody. Notably, tumor-locally confined microwave-controlled release avoided systematic toxicity in the tested animals. Collectively, our nanosystem provides a novel controllable strategy for promoting immune checkpoint blockade therapy, especially in tumor types deficient in infiltrated T-lymphocytes.

摘要

尽管在临床癌症治疗方面取得了革命性的成就,但免疫检查点阻断方案在缺乏新抗原暴露的肿瘤上仍然表现出有限的疗效。在这里,我们设计并合成了一种按需微波控制的臭氧释放纳米系统,以特异性地在肿瘤块中产生活性氧物质。通过利用 iRGD 修饰,合成的纳米系统可以特异性地富集在肿瘤微环境中,并随后被肿瘤细胞内化。在低功率微波的触发下,臭氧从纳米载体中释放出来,并在体外和体内抑制肿瘤细胞的生长。分子机制研究进一步揭示,释放的臭氧通过快速产生羟基自由基等活性氧物质诱导细胞溶解性细胞死亡。这种免疫原性细胞死亡产生的肿瘤特异性新抗原促进了细胞毒性 T 淋巴细胞的浸润,为免疫检查点阻断治疗提供了基础。在三阴性乳腺癌动物模型中,臭氧的肿瘤特异性递送显著提高了 PD-1 阻断抗体的系统抗肿瘤疗效。值得注意的是,肿瘤局部限制的微波控制释放避免了在测试动物中的系统毒性。总之,我们的纳米系统为促进免疫检查点阻断治疗提供了一种新的可控策略,特别是在浸润性 T 淋巴细胞缺乏的肿瘤类型中。

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