癌症研究
肺癌
转移
癌变
自噬
线粒体
脑转移
PI3K/AKT/mTOR通路
生物
医学
癌症
细胞凋亡
病理
内科学
细胞生物学
生物化学
作者
Gang Cheng,Qi Zhang,Jing Pan,Yongik Lee,Olivier Ouari,Micaël Hardy,Monika Zielonka,Charles R. Myers,Jacek Zielonka,Katherine M. Weh,Andrew C. Chang,Guoan Chen,Laura A. Kresty,Balaraman Kalyanaraman,Ming You
标识
DOI:10.1038/s41467-019-10042-1
摘要
Abstract Lung cancer often has a poor prognosis, with brain metastases a major reason for mortality. We modified lonidamine (LND), an antiglycolytic drug with limited efficacy, to mitochondria-targeted mito-lonidamine (Mito-LND) which is 100-fold more potent. Mito-LND, a tumor-selective inhibitor of oxidative phosphorylation, inhibits mitochondrial bioenergetics in lung cancer cells and mitigates lung cancer cell viability, growth, progression, and metastasis of lung cancer xenografts in mice. Mito-LND blocks lung tumor development and brain metastasis by inhibiting mitochondrial bioenergetics, stimulating the formation of reactive oxygen species, oxidizing mitochondrial peroxiredoxin, inactivating AKT/mTOR/p70S6K signaling, and inducing autophagic cell death in lung cancer cells. Mito-LND causes no toxicity in mice even when administered for eight weeks at 50 times the effective cancer inhibitory dose. Collectively, these findings show that mitochondrial targeting of LND is a promising therapeutic approach for investigating the role of autophagy in mitigating lung cancer development and brain metastasis.
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