前药
溶酶体
吡那考
活性氧
化学
苯硼酸
癌细胞
细胞毒性
体外
生物化学
药理学
癌症
生物
催化作用
酶
遗传学
作者
Steffen Daum,M. S. Viktor Reshetnikov,Miroslav Šíša,Tetiana Dumych,Maxim D. Lootsik,Rostyslav Bilyy,E. Bila,Christina Janko,Christoph Alexiou,Martin Herrmann,Leopold Sellner,Andriy Mokhir
标识
DOI:10.1002/anie.201706585
摘要
Abstract Cancer cells produce elevated levels of reactive oxygen species, which has been used to design cancer specific prodrugs. Their activation relies on at least a bimolecular process, in which a prodrug reacts with ROS. However, at low micromolar concentrations of the prodrugs and ROS, the activation is usually inefficient. Herein, we propose and validate a potentially general approach for solving this intrinsic problem of ROS‐dependent prodrugs. In particular, known prodrug 4‐( N ‐ferrocenyl‐ N ‐benzylaminocarbonyloxymethyl)phenylboronic acid pinacol ester was converted into its lysosome‐specific analogue. Since lysosomes contain a higher concentration of active ROS than the cytoplasm, activation of the prodrug was facilitated with respect to the parent compound. Moreover, it was found to exhibit high anticancer activity in a variety of cancer cell lines (IC 50 =3.5–7.2 μ m ) and in vivo (40 mg kg −1 , NK/Ly murine model) but remained weakly toxic towards non‐malignant cells (IC 50 =15–30 μ m ).
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