Copper-Bacteriochlorin Nanosheet as a Specific Pyroptosis Inducer for Robust Tumor Immunotherapy.

Zhang, Yunxiu; Jia, Qingyan; Li, Jian; Wang, Jian; Liang, Ke; Xue, Xiaokuang; Chen, Tiejin; Kong, Lin et al. · Adv Mater · 2023

basic_science · Level V

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Abstract

Pyroptosis is increasingly considered a new weathervane in cancer immune therapy. However, triggering specific pyroptotic tumor cell death while preserving normal cells still remains a major challenge. Herein, a brand-new pyroptosis inducer, copper-bacteriochlorin nanosheet (Cu-TBB), is designed. The synthesized Cu-TBB can be activated to an "on" state in the tumor microenvironment with glutathione (GSH) overexpression, leading to the release of Cu<sup>+</sup> and TBB, respectively. Intriguingly, the released Cu<sup>+</sup> can drive cascade reactions to produce O<sub>2</sub> <sup>-•</sup> and highly toxic ·OH in cells. Additionally, the released TBB can also generate O<sub>2</sub> <sup>-•</sup> and <sup>1</sup> O<sub>2</sub> upon 750 nm laser irradiation. Encouragingly, both Cu<sup>+</sup> -driven cascade reactions and photodynamic therapy pathways result in potent pyroptosis along with dendritic cell maturation and T cell priming, thus simultaneously eliminating the primary tumors and inhibiting the distant tumor growth and metastases. Conclusively, the well-designed Cu-TBB nanosheet is shown to trigger specific pyroptosis in vitro and in vivo, leading to enhanced tumor immunogenicity and antitumor efficacy while minimizing systemic side effects.

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