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Targeting copper homeostasis:Akkermansia-derived OMVs co-deliver Atox1 siRNA and elesclomol for cancer therapy
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作者 Muhammad Hamza Shuai Wang +8 位作者 Jiayi Sun Yang Du chuting zeng Yike Liu Kun Li Xili Zhu Huiying Liu Lin Chen Motao Zhu 《Acta Pharmaceutica Sinica B》 2025年第5期2640-2654,共15页
Cuproptosis,a recently identified form of regulated cell death triggered by excess intracellular copper,has emerged as a promising cytotoxic strategy for cancer therapy.However,the therapeutic efficacy of copper ionop... Cuproptosis,a recently identified form of regulated cell death triggered by excess intracellular copper,has emerged as a promising cytotoxic strategy for cancer therapy.However,the therapeutic efficacy of copper ionophores such as elesclomol(ES)is often hindered by cellular copper homeostasis mechanisms that limit copper influx and cuproptosis induction.To address this challenge,we developed a nanoagent utilizing outer membrane vesicle(OMV)derived from Akkermansia muciniphila(Akk)for co-delivery of antioxidant 1 copper chaperone(Atox1)-targeting siRNA and ES(siAtox1/ES@OMV)to tumors.In vitro,we demonstrated that Atox1 knockdown via siRNA significantly disrupted copper export mechanisms,resulting in elevated intracellular copper levels.Simultaneously,ES facilitated efficient copper influx and mitochondrial transport,leading to Fe–S cluster depletion,increased proteotoxic stress,and robust cuproptosis.In vivo,siAtox1/ES@OMV achieved targeted tumor delivery and induced pronounced cuproptosis.Furthermore,leveraging the immunomodulatory properties of OMVs,siAtox1/ES@OMV promoted T-cell infiltration and the activation of tumor-reactive cytotoxic T cells,enhancing tumor immune responses.The combination of siAtox1/ES-induced cuproptosis and immunogenic cell death synergistically suppressed tumor growth in both subcutaneous breast cancer and orthotopic rectal cancer mouse models.This study highlights the potential of integrating copper homeostasis disruption with a copper ionophore using an immunomodulatory OMV-based vector,offering a promising combinatorial strategy for cancer therapy. 展开更多
关键词 Cuproptosis Elesclomol Antioxidant protein 1 siRNA Outer membrane vesicle Akkermansia muciniphila Tumor microenvironment Cancer therapy Breast cancer
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