Ultrasound combined with nanobubbles promotes systemic anticancer immunity and augments anti-PD1 efficacy

超声波联合纳米气泡可促进全身抗癌免疫反应并增强抗PD-1疗效。

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作者:Jianjun Hu ,Jiangyi He ,Yunlong Wang ,Yang Zhao ,Kejing Fang ,Yan Dong ,Yanrong Chen ,Yue Zhang ,Chi Zhang ,Hongwei Wang ,Jun Tan ,Junyi Wang ,Ruiyang Zi ,Chengxiang Liu ,Houjie Liang ,Yanli Guo ,Juanjuan Ou

Abstract

Background: The poor immunogenicity of solid tumors limits the efficacy ofanti-programmed cell death protein 1 (anti-PD1)-based immune checkpoint blockade (ICB); thus, less than 30% of patients with cancer exhibit a response. Currently, there is still a lack of effective strategies for improving tumor immunogenicity. Methods: The antitumor effect of ultrasound-stimulated nanobubbles (USNBs) alone and in combination with an anti-PD1 antibody was evaluated in RM1 (prostate cancer), MC38 (colon cancer) and B16 (melanoma) xenograft mouse models. The phenotypes of antigen-presenting cells and CD8+ T cells were evaluated by flow cytometry. Damage-associated molecular pattern (DAMP) release, antigen release and tumor cell necrosis were assessed via western blot, flow cytometry, transmission electron microscopy and confocal microscopy. Results: USNB promoted the infiltration and antitumor activity of CD8+ T cells. The combination of USNB and anti-PD1 blockade improved systemic antitumor immunity and resulted in an abscopal effect and long-term immune memory protection after complete tumor remission. Mechanistically, tumor-targeting USNB induced tumor cell necrosis through an ultrasound-mediated cavitation effect, which significantly increased DAMP release and tumor antigen presentation, consequently sensitizing tumors to ICB treatment. Conclusion: The administration of USNB increased tumor immunogenicity by remodeling the tumor-immune microenvironment, providing a promising strategy for sensitizing poorly immunogenic solid tumors to immunotherapy in the clinic.

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