声动力疗法
肿瘤微环境
放射治疗
芬顿反应
癌症研究
联合疗法
免疫疗法
光动力疗法
化学
医学
纳米技术
激进的
肿瘤细胞
免疫系统
药理学
材料科学
免疫学
内科学
生物化学
有机化学
作者
Haiyan Gao,Zhiping Cao,Huanhuan Liu,Lijuan Chen,Yan Bai,Qingxia Wu,Xuan Yu,Wei Wei,Meiyun Wang
出处
期刊:Theranostics
[Ivyspring International Publisher]
日期:2023-01-01
卷期号:13 (6): 1974-2014
被引量:33
摘要
Chemodynamic therapy (CDT) is well-known for using the tumor microenvironment to activate the Fenton reaction or Fenton-like reaction to generate strong oxidative hydroxyl radicals for tumor-specific treatment. It is highly selective and safe, without depth limitation of tissue penetration, and shows its potential as a new green therapeutic method with great clinical application. However, the catalytic efficiency of reagents involved in the Fenton reaction is severely affected by the inherent microenvironmental limitations of tumors and the strict Fenton reaction-dependent conditions. With the increasing application of nanotechnology in the medical field, combined therapies based on different types of functional nanomaterials have opened up new avenues for the development of next-generation CDT-enhanced system. This review will comprehensively exemplify representative results of combined therapies of CDT with other antitumor therapies such as chemotherapy, phototherapy, sonodynamic therapy, radiation therapy, magnetic hyperthermia therapy, immunotherapy, starvation therapy, gas therapy, gene therapy, oncosis therapy, or a combination thereof for improving antitumor efficiency from hundreds of the latest literature, introduce strategies such as the ingenious design of nanomedicines and tumor microenvironment regulations to enhance the combination therapy, and further summarize the challenges and future perspective of CDT-based multimodal anticancer therapy.
科研通智能强力驱动
Strongly Powered by AbleSci AI