光催化
化学
体内
体外
铱
癌细胞
外周血单个核细胞
组合化学
核化学
癌症
生物物理学
催化作用
生物化学
医学
内科学
生物技术
生物
作者
Zhongxian Fan,Yi Rong,Tumpa Sadhukhan,Shaoxia Liang,Wenqing Li,Zhanxiang Yuan,Zilin Zhu,Shunwen Guo,Shaomin Ji,Jinquan Wang,Rajesh Kushwaha,Samya Banerjee,Krishnan Raghavachari,Huaiyi Huang
标识
DOI:10.1002/ange.202202098
摘要
Abstract Quantifying the content of metal‐based anticancer drugs within single cancer cells remains a challenge. Here, we used single‐cell inductively coupled plasma mass spectrometry to study the uptake and retention of mononuclear ( Ir1 ) and dinuclear ( Ir2 ) Ir III photoredox catalysts. This method allowed rapid and precise quantification of the drug in individual cancer cells. Importantly, Ir2 showed a significant synergism but not an additive effect for NAD(P)H photocatalytic oxidation. The lysosome‐targeting Ir2 showed low dark toxicity in vitro and in vivo . Ir2 exhibited high photocatalytic therapeutic efficiency at 525 nm with an excellent photo‐index in vitro and in tumor‐bearing mice model. Interestingly, the photocatalytic anticancer profile of the dinuclear Ir2 was much better than the mononuclear Ir1 , indicating for the first time that dinuclear metal‐based photocatalysts can be applied for photocatalytic anticancer treatment.
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