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◆ ACS Applied Materials & Interfaces2025-12-04· Calcium

Thiosulfate-Enhanced Fenton-Like Nanocatalyst for Synergistic Chemodynamic Therapy and Calcium Death in Tumor Treatment

Zhaomin Tang, Yudong Wang, Kanglin Chen, Yu‐Che Ou, Wenxin Liao, PinJia Zhong, Huangzhao Wei, Qiuye Jin

原始摘要(英文原文)· Original abstract
To enhance chemodynamic therapy (CDT) and induce calcium overload in tumor cells, we developed a novel nanocatalyst, Cu/ZIF-8@CaS 2 O 3 @PEG (CZCaP) via a dual-pathway strategy. The system was constructed based on a biocompatible ZIF-8 scaffold, which incorporated Cu 2+ ions as the catalytic center and was loaded with calcium thiosulfate (CaS 2 O 3 ) as a therapeutic agent. The surface of the nanocatalyst was modified with PEG to enable a tumor microenvironment (TME)-responsive drug release. Under acidic TME conditions, CZCaP dissociated to release CaS 2 O 3 and Cu 2+ . The thiosulfate ions (S 2 O 3 2– ) acted as a cocatalyst by donating electrons to hydroperoxyl ( • OOH) radicals generated from H 2 O 2 decomposition. This reaction accelerated the Cu(II)/Cu(I) redox cycling, leading to an enhanced production of hydroxyl radicals ( • OH). Consequently, glutathione (GSH) was depleted, compromising the antioxidant capacity of tumor cells. Simultaneously, • OH-mediated oxidative damage impaired PMCA4, a calcium efflux pump, resulting in intracellular accumulation of Ca 2+ and ultimately calcium overload. Furthermore, • OH downregulated the antiapoptotic protein Bcl-2, collapsed the mitochondrial membrane potential, and promoted calcium influx into mitochondria, thereby inducing apoptosis. By integrating inorganic cocatalysis with the disruption of calcium signaling, this system overcomes the limitation of conventional CDT and presents an innovative multimodal strategy for tumor therapy.
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Thiosulfate-Enhanced Fenton-Like Nanocatalyst for Synergistic Chemodynamic Therapy and Calcium Death in Tumor Treatment — 科研速览 Science Skim