放射增敏剂
放射治疗
癌症研究
材料科学
钆
纳米颗粒
癌症
纳米医学
磁共振成像
肺癌
医学
细胞
肿瘤科
纳米技术
化学
内科学
放射科
冶金
生物化学
作者
Yanan Du,Hao Sun,François Lux,Yi Xie,Liqing Du,Chang Xu,Hong Zhang,Ningning He,Jinhan Wang,Yang Liu,Géraldine Leduc,Tristan Doussineau,Kaihua Ji,Qin Wang,Zhenhua Lin,Yan Wang,Qiang Liu,Olivier Tillement
标识
DOI:10.1021/acsami.0c16548
摘要
Radiotherapy is the main treatment for cancer patients. A major concern in radiotherapy is the radiation resistance of some tumors, such as human nonsmall cell lung cancer. However, the radiation dose delivered to the tumors is often limited by the possibility of collateral damage to surrounding healthy tissues. A new and efficient gadolinium-based nanoparticle, AGuIX, has recently been developed for magnetic resonance imaging-guided radiotherapy and has been proven to act as an efficient radiosensitizer. The amplified radiation effects of AGuIX nanoparticles appear to be due to the emission of low-energy photoelectrons and Auger electron interactions. We demonstrated that AGuIX nanoparticles exacerbated radiation-induced DNA double-strand break damage and reduced DNA repair in the H1299 nonsmall cell lung cancer cell line. Furthermore, we observed a significant improvement in tumor cell damage and growth suppression, under radiation therapy, with the AGuIX nanoparticles in a H1299 mouse xenograft model. This study paves the way for research into the radiosensitization mechanism of AGuIX nanoparticles and provides a scientific basis for the use of AGuIX nanoparticles as radiosensitizing drugs.
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