Pyroptosis‐Activating Nanoplatform Unleashes Metabolic‐Directed Neutrophil Reprogramming to Boost Cancer Immunotherapy

上睑下垂 肿瘤微环境 免疫疗法 重编程 癌症研究 免疫系统 炎症 癌症免疫疗法 生物 串扰 免疫学 先天免疫系统 抗原呈递 获得性免疫系统 癌症 细胞生物学 细胞因子 免疫检查点 免疫 医学 颗粒酶 颗粒酶A T细胞 癌细胞
作者
Yingying Li,Zhijing He,Chuanxiu Zhu,Dan Liu,Haotian Liu,Yujie Wang,Huiai Lu,Menghan Yang,Jiayao Wen,Feiyan Zhao,Wei He,Xiyou Du,Xiaoye Yang,Lei Ye,Guangxi Zhai
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:36 (36)
标识
DOI:10.1002/adfm.202519273
摘要

ABSTRACT The clinical efficacy of current immunotherapeutic approaches remained to be constrained by the profoundly immunosuppressive tumor microenvironment (TME). To overcome these obstacles, this study developed a synergistic nanoplatform, HA‐V‐9302@ZIF (HVZ), that synergized pyroptosis induction and metabolic reprogramming. This hyaluronic acid‐cloaked system exploited the enzymatic and acidic TME to synchronously release Zn 2 + from the ZIF‐8 core and the ASCT‐2 inhibitor V‐9302. Pyroptosis induced by Zn 2 + ‐triggered caspase‐1/GSDMD signal released damage‐associated molecular patterns (DAMPs), thereby igniting inflammation and recruiting neutrophils. Simultaneously, metabolic reprogramming by V‐9302 blocked tumor glutamine/leucine uptake, which created a TME leucine niche to drive neutrophil differentiation into antigen‐presenting CD74 + subsets, and conserved glutamine to revitalize cDC1 function. Crucially, pyroptosis‐driven inflammation provided a triggering factor of innate immunity, meanwhile HVZ mediated metabolic regulation, empowering the antigen presentation of neutrophils and cDC1s, subsequently activating CTLs. Consequently, pyroptosis‐evoked‐CTLs secreted the granzyme B (GzmB), further inducing the pyroptosis by GzmB/GSDME signal, which established a positive feedback cycle against tumor. The synergistic interplay of pyroptosis‐driven immune cell recruitment and immunometabolic reprogramming effectively broke the barriers of antitumor immunity and potentiating immunotherapy responses in vitro and in vivo. This study provided a new perspective for the design of immunotherapy strategies based on pyroptosis and metabolic regulation.
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