化学
脂质过氧化
活性氧
生物物理学
缺氧(环境)
癌细胞
谷胱甘肽
细胞内
肿瘤缺氧
癌症研究
纳米技术
生物化学
氧气
癌症
材料科学
抗氧化剂
酶
生物
医学
放射治疗
遗传学
有机化学
内科学
作者
Zhe Dong,Liang Peng,Guoqiang Guan,Baoli Yin,Youjuan Wang,Renye Yue,Xiaobing Zhang,Guosheng Song
标识
DOI:10.1002/anie.202206074
摘要
Abstract Lipid peroxides accumulation induced ferroptosis is an effective cell death pathway for cancer therapy. However, the hypoxic condition of tumor microenvironment significantly suppresses the efficacy of ferroptosis. Here, we design a novel nanoplatform to overcome hypoxia‐induced ferroptosis resistance. Specifically, we synthesize a novel kind of perfluorocarbon (PFOB)@manganese oxide (MnOx) core‐shell nanoparticles (PM‐CS NPs). Owing to the good carrier of O 2 as fuel, PM‐CS NPs can induce higher level of ROS generation, lipid peroxidation and GSH depletion, as well as lower activity of GPX4, compared with MnOx NPs alone. Moreover, the supplement of O 2 can relieve tumor hypoxia to break down the storage of intracellular lipid droplets and increase expression of ACSL4 (a symbol for ferroptosis sensitivity). Furthermore, upon stimulus of GSH or acidity, PM‐CS NPs exhibit the “turn on” 19 F‐MRI signal and activatable T 1 /T 2 ‐MRI contrast for correlating with the release of Mn. Finally, PM‐CS NPs exert high cancer inhibition rate for ferroptosis based therapy via synergetic combination of O 2 ‐mediated enhancement of key pathways of ferroptosis.
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