纳米点
荧光
硒
线粒体
氧化应激
激进的
化学
光化学
共价键
超氧化物
细胞毒性
核化学
生物化学
物理
体外
有机化学
物理化学
酶
量子力学
作者
Hong Huang,Shouxin Zhang,Biyun Chen,Xiaoyan Wang,Qineng Xia,Zhigang Ge,Yangang Wang,Xi Li
标识
DOI:10.1016/j.jcis.2020.02.011
摘要
Mitochondrial oxidative stress is associated with the occurrence and development of a wide range of human diseases. The development of methodologies to alleviate oxidative stress-mediated injury may have therapeutic potential. Herein, we report the design and preparation of triphenylphosphonium-functionalized selenium-doped carbon nanodots (TPP-Se-CDs) that can efficiently scavenging hydroxyl radicals (OH) and superoxide anions (O2−) in mitochondria region. Se-CDs with two-photon blue fluorescence were initially prepared by facile hydrothermal treatment of selenomethionine, followed by the covalent conjugation with TPP. The as-obtained TPP-Se-CDs showed high colloidal stability, strong scavenging abilities towards OH and O2−. Moreover, TPP-Se-CDs exhibited low cytotoxicity and mitochondria targeting ability. Taking advantages of these prominent features, TPP-Se-CDs have been successfully applied to combat H2O2 and phorbol 12-myristate 13-acetate (PMA) induced oxidative stress in mitochondria.
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