一氧化氮
细胞凋亡
体内
体外
化学
生物物理学
肿瘤微环境
石墨氮化碳
活性氮物种
辐照
精氨酸
活性氧
分子
纳米材料
癌症研究
光化学
纳米技术
生物化学
材料科学
肿瘤细胞
光催化
催化作用
生物
氨基酸
有机化学
物理
生物技术
核物理学
作者
Xiao Fang,Shuxian Cai,Min Wang,Zhaowei Chen,Chunhua Lü,Huanghao Yang
标识
DOI:10.1002/anie.202015082
摘要
Abstract Nitric oxide (NO) is a gaseous signal molecule with multiple physiological functions, and it also plays a key role in cancer therapy. However, the production of NO which depends on O 2 or H 2 O 2 is limited within the tumor microenvironment, leading to unsatisfactory anticancer effect. Herein, we report a NO‐based phototherapeutic strategy mediated by photogenerated holes for hypoxic tumors, which is achieved by irradiation of the poly‐L‐arginine modified carbon‐dots‐doped graphitic carbon nitride nanomaterial (ArgCCN). Upon red light irradiation, the photogenerated holes on ArgCCN oxidized water into H 2 O 2 which subsequently oxidized the arginine residues to produce NO. In vitro and in vivo experiments showed that the high concentration of NO produced by ArgCCN could induce cancer cell apoptosis. The presented phototherapeutic strategy is based on microenvironment‐independent photogenerated holes mediated oxidation reaction, paving the way for the development of NO therapeutic strategy.
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