A Domino‐Synthesized Dicoordinate Copper(I) Bis‐imidazopyridine Complex Triggering Cuproptosis/Ferroptosis for Enhanced Cancer Immunotherapy

化学 免疫疗法 癌症免疫疗法 配体(生物化学) 癌症研究 多米诺骨牌 细胞内 组合化学 免疫系统 药品 细胞生物学 级联反应 细胞 癌症治疗 PD-L1 细胞毒性 mTORC1型 T细胞 癌细胞 结构-活动关系 癌症 免疫检查点 计算生物学 程序性细胞死亡 细胞培养 HEK 293细胞 生物
作者
Ning Tian,Haoyu Ju,Yu Liu,Jinmei Huang,Jinmei Huang,Zhenggang Luan,Qifeng Hou,Qing Chen,Bin Zhang,Jin Huang,Jin Huang,Ming‐Hua Zeng
出处
期刊:Angewandte Chemie [Wiley]
卷期号:: e5756541-e5756541
标识
DOI:10.1002/anie.5756541
摘要

ABSTRACT Novel synthetic methods offer significant potential to accelerate drug development, yet there remains a largely unexplored area for efficiently synthesizing metal‐based anticancer agents. Herein, we report a novel solvothermal domino reaction of pyridine‐2‐methylamine (and its 4‐OCH 3 ‐substituted derivative), benzaldehyde, and CuCl 2 ∙2H 2 O, which simultaneously achieves ligand synthesis and coordination assembly in one pot and facilely affords innovative dinuclear dicoordinate copper(I) complexes ( Cu1 and Cu2 ) with the in situ‐formed bulky steric‐hindering tetraarylethane ligands featuring the bis‐imidazo[1,5‐ a ]pyridine scaffold. The unique geometry of Cu1 and Cu2 confers physiological stability and vacant coordination sites for efficiently catalyzing Fenton‐like reactions. Further studies reveal that Cu2 effectively elevates intracellular copper ion levels to induce cuproptosis, concurrently disrupting cellular redox homeostasis to trigger ferroptosis. The concurrent cuproptosis‐ferroptosis activation finally elicits significantly enhanced immunogenic cell death (ICD), which facilitates the antitumor activity of Cu2 . Moreover, in combination with immune checkpoint inhibitor α PD‐1, Cu2 exhibits improved immunotherapy effects. This work introduces the first small‐molecule copper complex that achieves immunotherapy potentiation through cuproptosis‐ferroptosis‐ICD induction and provides a new pathway for accessing innovative metal‐based antitumor agents through such a rationally designed domino reaction.
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