过氧亚硝酸盐
过氧化氢
一氧化氮
化学
活性氧
激进的
内生
过氧化物
羟基自由基
生物物理学
癌症研究
生物化学
超氧化物
酶
有机化学
生物
作者
Li Wang,Kun Ge,Jiaqi Duan,Xiaomeng Du,Guoqiang Zhou,Lili Ma,Shutao Gao,Jinchao Zhang
标识
DOI:10.1016/j.jcis.2023.10.092
摘要
Chemodynamic therapy (CDT) based on hydroxyl radicals (•OH) to suppress tumor cells is a promising strategy due to its efficacy and safety. Nevertheless, in tumor cells, CDT still faces challenges such as insufficient •OH and weak killing effect of tumor cells under physiological conditions due to inadequate amounts of endogenous hydrogen peroxide (H2O2) and heightened glutathione expression. These challenges limit the therapeutic potential of CDT. To improve the effects of CDT, combination treatment strategies have been developed. Here, we report a rationally designed nanocomposite (CaO2@Cu-LA) with self-supplying H2O2 ability from calcium peroxide, and nitric oxide (NO) generation ability from l-arginine. NO molecules not only exhibit a strong killing effect, but also have the potential to transfer into the more cytotoxic substance peroxynitrite anion by reacting with reactive oxygen species. The results showed that CaO2@Cu-LA could significantly suppress tumor growth by increasing •OH radicals and NO molecules. Taken together, the strategy developed here provides a good application foreground to yield a remarkable synergistic antitumor effect of CDT and NO gas therapy.
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