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Stable Cyclometalated Gold(III) Complex Engaging Isoquinoline Derivative and Disulfur Ligand Elicits Necroptosis-Dependent Immunogenic Cell Death.

Journal of medicinal chemistry 2026 Vol.69(4) p. 4932-4944

Zhang W, Yang LM, Zhao Y, Li MY, Shi YQ, Lu Y, Wang XS, He S, Wang FY, Huang KB, Liang H

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Cancer chemoimmunotherapy based on metal complexes has attracted wide interest for its ability to eliminate tumor cells while activating antitumor immunity, primarily by inducing immunogenic cell deat

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APA Zhang W, Yang LM, et al. (2026). Stable Cyclometalated Gold(III) Complex Engaging Isoquinoline Derivative and Disulfur Ligand Elicits Necroptosis-Dependent Immunogenic Cell Death.. Journal of medicinal chemistry, 69(4), 4932-4944. https://doi.org/10.1021/acs.jmedchem.5c03654
MLA Zhang W, et al.. "Stable Cyclometalated Gold(III) Complex Engaging Isoquinoline Derivative and Disulfur Ligand Elicits Necroptosis-Dependent Immunogenic Cell Death.." Journal of medicinal chemistry, vol. 69, no. 4, 2026, pp. 4932-4944.
PMID 41635077

Abstract

Cancer chemoimmunotherapy based on metal complexes has attracted wide interest for its ability to eliminate tumor cells while activating antitumor immunity, primarily by inducing immunogenic cell death (ICD). However, clinical translation of ICD inducers remains challenging, underscoring the need for inducers that elicit ICD alternative cell death mechanisms. Necroptosis represents a potent yet underutilized route to trigger ICD. Herein, we designed a series of stable Au(III) complexes incorporating an isoquinoline-derived cyclometalated C^N ligand and various strong electron-donating S^S or N^N auxiliary ligands. Among them, exhibited potent cytotoxicity, inhibited thioredoxin reductase (TrxR), elevated intracellular ROS, and triggered ROS-mediated necroptosis. This process elicited robust necroptosis-dependent ICD. , significantly suppressed tumor growth, remodeled the tumor immune microenvironment, and synergized effectively with anti-PD-1 therapy. This work presents the first rationally designed cyclometalated Au(III) complex that functions as a necroptosis-dependent ICD inducer, offering a promising strategy for metal-based chemoimmunotherapy.

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