Nanoparticle-enhanced radiotherapy synergizes with PD-L1 blockade to limit post-surgical cancer recurrence and metastasis

Xin Guan(Tongji University), Liping Sun(Tongji University), Yuting Shen(Tongji University), Feng-Shan Jin(Tongji University), Xiao‐Wan Bo(Tongji University), Chunyan Zhu(Tongji University), Xiaoxia Han(Tongji University), Xiaolong Li(Tongji University), Yu Chen(Shanghai University), Huixiong Xu(Tongji University), Wenwen Yue(Tongji University)
Nature Communications
May 20, 2022
Cited by 173Open Access
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Abstract

Abstract Cancer recurrence after surgical resection (SR) is a considerable challenge, and the biological effect of SR on the tumor microenvironment (TME) that is pivotal in determining postsurgical treatment efficacy remains poorly understood. Here, with an experimental model, we demonstrate that the genomic landscape shaped by SR creates an immunosuppressive milieu characterized by hypoxia and high-influx of myeloid cells, fostering cancer progression and hindering PD-L1 blockade therapy. To address this issue, we engineer a radio-immunostimulant nanomedicine (IPI549@HMP) capable of targeting myeloid cells, and catalyzing endogenous H 2 O 2 into O 2 to achieve hypoxia-relieved radiotherapy (RT). The enhanced RT-mediated immunogenic effect results in postsurgical TME reprogramming and increased susceptibility to anti-PD-L1 therapy, which can suppress/eradicate locally residual and distant tumors, and elicits strong immune memory effects to resist tumor rechallenge. Our radioimmunotherapy points to a simple and effective therapeutic intervention against postsurgical cancer recurrence and metastasis.


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