活性氧
单线态氧
化学发光
光动力疗法
光化学
体内
光毒性
化学
激进的
纳米材料
肿瘤微环境
结合
纳米技术
材料科学
生物物理学
癌症研究
氧气
体外
生物化学
肿瘤细胞
医学
有机化学
生物技术
数学分析
生物
数学
作者
Cheng‐Long Shen,Tianci Jiang,Qing Lou,Wenbo Zhao,Chaofan Lv,Guangsong Zheng,Hangrui Liu,Pengfei Li,Lingling Dai,Kai-Kai Liu,Jinhao Zang,Feng Wang,Lin Dong,Songnan Qu,Zhe Cheng,Chongxin Shan
出处
期刊:SmartMat
[Wiley]
日期:2022-03-17
卷期号:3 (2): 269-285
被引量:37
摘要
Abstract Carbon nanogels (CNGs) with dual ability of reactive oxygen species (ROS) imaging and photodynamic therapy have been designed with self‐assembled chemiluminescent carbonized polymer dots (CPDs). With efficient deep‐red/near‐infrared chemiluminescence (CL) emission and distinctive photodynamic capacity, the H 2 O 2 ‐driven chemiluminescent CNGs are further designed by assembling the polymeric conjugate and CL donors, enabling an in vitro and in vivo ROS bioimaging capability in animal inflammation models and a high‐performance therapy for xenograft tumors. Mechanistically, ROS generated in inflammatory sites or tumor microenvironment can trigger the chemically initiated electron exchange luminescence in the chemical reaction of peroxalate and H 2 O 2 , enabling in vivo CL imaging. Meanwhile, part of the excited‐state electrons will transfer to the ambient H 2 O or dissolved oxygen and in turn lead to the type I and type II photochemical ROS production of hydroxyl radicals or singlet oxygen, endowing the apoptosis of tumor cells and thus enabling cancer therapy. These results open up a new avenue for the design of multifunctional nanomaterials for bioimaging and antienoplastic agents.
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