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A photo-triggered self-accelerated nanoplatform for multifunctional image-guided combination cancer immunotherapy

Xiaoying Kang, Yuan Zhang, Jianwen Song, Lu Wang, Wen Li (), Ji Qi () and Ben Zhong Tang ()
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Xiaoying Kang: Nankai University
Yuan Zhang: Nankai University
Jianwen Song: Nankai University
Lu Wang: Chinese Academy of Medical Sciences and Peking Union Medical College
Wen Li: Chinese Academy of Medical Sciences and Peking Union Medical College
Ji Qi: Nankai University
Ben Zhong Tang: The Chinese University of Hong Kong

Nature Communications, 2023, vol. 14, issue 1, 1-17

Abstract: Abstract Precise and efficient image-guided immunotherapy holds great promise for cancer treatment. Here, we report a self-accelerated nanoplatform combining an aggregation-induced emission luminogen (AIEgen) and a hypoxia-responsive prodrug for multifunctional image-guided combination immunotherapy. The near-infrared AIEgen with methoxy substitution simultaneously possesses boosted fluorescence and photoacoustic (PA) brightness for the strong light absorption ability, as well as amplified type I and type II photodynamic therapy (PDT) properties via enhanced intersystem crossing process. By formulating the high-performance AIEgen with a hypoxia-responsive paclitaxel (PTX) prodrug into nanoparticles, and further camouflaging with macrophage cell membrane, a tumor-targeting theranostic agent is built. The integration of fluorescence and PA imaging helps to delineate tumor site sensitively, providing accurate guidance for tumor treatment. The light-induced PDT effect could consume the local oxygen and lead to severer hypoxia, accelerating the release of PTX drug. As a result, the combination of PDT and PTX chemotherapy induces immunogenic cancer cell death, which could not only elicit strong antitumor immunity to suppress the primary tumor, but also inhibit the growth of distant tumor in 4T1 tumor-bearing female mice. Here, we report a strategy to develop theranostic agents via rational molecular design for boosting antitumor immunotherapy.

Date: 2023
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DOI: 10.1038/s41467-023-40996-2

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