代谢途径
癌症
线粒体
细胞代谢
生物
计算生物学
癌症研究
柠檬酸循环
信号转导
自噬
三羧酸
癌细胞
细胞周期
细胞
生物信息学
肿瘤微环境
化学
新陈代谢
纳米医学
机制(生物学)
细胞代谢
癌症治疗
疾病
铜代谢
谷氨酰胺分解
医学
恶性细胞
细胞信号
PI3K/AKT/mTOR通路
细胞生长
酶
翻译(生物学)
细胞周期检查点
细胞生物学
癌症治疗
系统生物学
药物发现
作者
Qian Hao,Yu Gan,Xiang Zhou
标识
DOI:10.1038/s41423-026-01387-x
摘要
Cuproptosis, a recently identified copper-dependent form of regulated cell death, is driven by mitochondrial dysfunction caused by copper overload. Cuproptosis results from proteotoxic stress, which is triggered by copper-induced aggregation of lipoylated tricarboxylic acid (TCA) cycle enzymes and destabilization of iron-sulfur cluster proteins. This review elucidates the mechanisms of cuproptosis, emphasizing its regulation by copper homeostasis, metabolic reprogramming, and key signaling pathways such as p53, HIF-1α, Wnt/β-catenin, and AKT. Notably, copper modulates antitumor immunity through its effects on the tumor microenvironment, suggesting a critical role in cancer immunotherapy. Therapeutic strategies using copper ionophores and nanomedicine platforms demonstrate potential to induce cuproptosis in a variety of cancers. Preclinical studies highlight cuproptosis as a promising strategy against malignancies with copper dysregulation or mitochondrial metabolism adaptation, while clinical translation requires biomarker-driven patient stratification and optimized delivery systems. This synthesis provides a framework for harnessing cuproptosis in precision oncology, bridging mechanistic insights to therapeutic innovation.
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