光动力疗法
体内分布
单线态氧
癌症研究
癌症
药物输送
化学
纳米技术
医学
材料科学
内科学
氧气
有机化学
生物化学
体外
作者
Guocan Yu,Shan Yu,Manik Lal Saha,Jiong Zhou,Timothy R. Cook,Bryant C. Yung,Jin Chen,Zhengwei Mao,Fuwu Zhang,Zijian Zhou,Yijing Liu,Li Shao,Sheng Wang,Changyou Gao,Feihe Huang,Peter J. Stang,Xiaohong Chen
标识
DOI:10.1038/s41467-018-06574-7
摘要
Photodynamic therapy is an effective alternative to traditional treatments due to its minimally invasive nature, negligible systemic toxicity, fewer side effects, and avoidance of drug resistance. However, it is still challenging to design photosensitizers with high singlet oxygen (1O2) quantum yields (QY) due to severe aggregation of the hydrophobic photosensitizers. Herein, we developed a discrete organoplatinum(II) metallacage using therapeutic cis-(PEt3)2Pt(OTf)2 as the building block to improve the 1O2 QY, thus achieving synergistic anticancer efficacy. The metallacage-loaded nanoparticles (MNPs) with tri-modality imaging capability allow precise diagnosis of tumor and real-time monitoring the delivery, biodistribution, and excretion of the MNPs. MNPs exhibited excellent anti-metastatic effect and superior anti-tumor performance against U87MG, drug resistant A2780CIS, and orthotopic tumor models, ablating the tumors without recurrence after a single treatment. Gene chip analyses confirmed the contribution of different therapeutic modalities to the tumor abrogation. This supramolecular platform holds potential in precise cancer theranostics.
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