转移性乳腺癌
癌症研究
转移
乳腺癌
癌症干细胞
SOX2
癌细胞
癌症
线粒体
CA15-3号
医学
乳腺癌转移
干细胞
前列腺癌
生物
氧化磷酸化
转移性肿瘤
肿瘤微环境
CD44细胞
化学
内科学
三阴性乳腺癌
循环肿瘤细胞
肿瘤科
作者
Jiajia Zhang,Ruo-Fei Tian,Changgeng Song,Rui Liu,Duo He,Gai-Qin Zhang,Xiulin Fan,Zi-Chuan Duan,Kun Zhang,Tianjiao Zhang,Yatong Chen,Jian Zhang,Ke Wang,Jumei Zhao,Xiang-Min Yang,Zhi‐Nan Chen,Ling Li
标识
DOI:10.1038/s41467-025-67091-y
摘要
Metastatic cancer cells, originating from cancer stem cells with metastatic capacity, utilize nutrient flexibility to navigate the challenges of the metastatic cascade. However, the nutrient required to maintain the stemness potentials of metastatic cancer cells remains unclear. Here, we reveal that metastatic breast cancer cells sustain stemness and initiate metastasis upon detachment by taking up and oxidizing lactate. In detached metastasizing breast cancer cells, lactate is incorporated into the tricarboxylic acid cycle, boosting oxidative phosphorylation, and promoting the stemness potentials via α-KG-DNMT3B-mediated SOX2 hypomethylation. Moreover, lactate is taken up and oxidized in mitochondria by the CD147/MCT1/LDHB complex, which correlates with stemness potentials and tumor metastasis in patients with breast cancer. An intracellularly expressed single-chain variable fragment targeting mitochondrial CD147 (mito-CD147 scFv) effectively disrupts the mitochondrial CD147/MCT1/LDHB complex, inhibits lactate-induced stemness potential, depletes circulating breast cancer cells, and reduces metastatic burden, suggesting promising clinical applications in reducing lactate-fueled metastasis.
科研通智能强力驱动
Strongly Powered by AbleSci AI