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Mn 2+ /CpG Oligodeoxynucleotides Codecorated Black Phosphorus Nanosheet Platform for Enhanced Antitumor Potency in Multimodal Therapy

作者:Kai Ling, Jintao Zheng, Xiaohong Jiang, Weijie Huang, Youqing Mai, Chuanghong Liao, Shuting Fan, Jianlan Bu, Rui Li, Bingchun Zeng, Qiunuan Zheng, Ruibin Huang, Zhiyang Li, Nai-Kei Wong, Hongyan Jiang · 发表于:ACS Nano · 年份:2024 · DOI:10.1021/acsnano.3c07123 · 被引用次数:53 · 研究领域:Nanoplatforms for cancer theranostics、interferon and immune responses、Immune cells in cancer

Manganese ions (Mn 2+ )-coordinated nanoparticles have emerged as a promising class of antitumor nanotherapeutics, capable of simultaneously disrupting the immunosuppressive tumor microenvironment (TME) and triggering the stimulator of interferon genes (STING) pathway-dependent antitumor immunity. However, the activation of STING signaling by Mn 2+ -based monotherapies is suboptimal for comprehensive stimulation of antigen presenting cells and reversal of immunosuppression in the TME. Here, we report the design of a Mn 2+ /CpG oligodeoxynucleotides (ODNs) codecorated black phosphorus nanosheet (BPNS@Mn 2+ /CpG) platform based on the Mn 2+ modification of BPNS and subsequent adsorption of synthetic CpG ODNs. The coordination of Mn 2+ significantly improved the stability of BPNS and the adsorption of CpG ODNs. The acidic TME and endosomal compartments can disrupt the Mn 2+ coordination, triggering pH-responsive release of CpG ODNs and Mn 2+ to effectively activate the Toll-like receptor 9 and STING pathways. As a result, M2-type macrophages and immature dendritic cells were strongly stimulated in the TME, thereby increasing T lymphocyte infiltration and reversing the immunosuppression within the TME. Phototherapy and chemodynamic therapy, utilizing the BPNS@Mn 2+ /CpG platform, have demonstrated efficacy in inducing immunogenic cell death upon 808 nm laser irradiation. Importantly, the treatment of BPNS@Mn 2+ /CpG with laser irradiation exhibited significant therapeutic efficac...