首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Red light triggered photodynamic-chemo combination therapy using a prodrug caged by photosensitizer
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Red light triggered photodynamic-chemo combination therapy using a prodrug caged by photosensitizer

机译:红光触发光学动力学 - 化疗使用光敏剂笼的前药 - 化疗组合疗法

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Development of the drug with high therapeutic efficacy and low toxicity is crucial to cancer ablation. In this study, we have demonstrated a red light-responsive prodrug BDP-TK-CPT by connecting the chemotherapeutic agent camptothecin with a boron dipyrromethene (BDP)-based photosensitizer via a reactive oxygen species (ROS)-labile thioketal chain. Since camptothecin is modified by a BDP-based macrocycle at the active site, the formed prodrug displays an extremely low toxicity in dark. However, upon illumination by red light, it can efficiently generate ROS leading to cell death by photodynamic therapy. Meanwhile, the ROS generated can destroy thioketal group to release free camptothecin which further results in local cell death by chemotherapy. The combined antitumor effects of the prodrug have been verified in HepG2, EC109, and HeLa cancer cells and mice bearing H22 tumors. This study may provide an alternative strategy for stimuli-responsive combination treatment of tumors by conjugation of ROS-activatable prodrugs with photosensitizing agents. (C) 2021 Elsevier Masson SAS. All rights reserved.
机译:开发高效低毒的药物对肿瘤消融至关重要。在这项研究中,我们通过活性氧物种(ROS)不稳定的硫代缩酮链将化学治疗剂喜树碱与基于硼二吡咯烷(BDP)的光敏剂连接,证明了红光响应性前药BDP-TK-CPT。由于喜树碱在活性部位被基于BDP的大环修饰,形成的前药在黑暗中显示出极低的毒性。然而,在红光照射下,它可以通过光动力疗法有效地产生ROS,导致细胞死亡。同时,产生的活性氧可以破坏硫缩酮基团,释放出游离喜树碱,进而导致化疗导致局部细胞死亡。前药的联合抗肿瘤作用已在HepG2、EC109和HeLa癌细胞以及H22肿瘤小鼠中得到证实。这项研究可能为通过将活性氧激活的前药与光敏剂结合来进行刺激反应性肿瘤联合治疗提供一种替代策略。(c)2021爱思唯尔马松SAS。版权所有。

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