Department of Cardiology, Shanghai Children's Hospital , Shanghai Jiaotong University , No. 355 Luding Road , Shanghai 200062 , P. R. China.
ACS Appl Mater Interfaces. 2019 Aug 14;11(32):29330-29340. doi: 10.1021/acsami.9b10211. Epub 2019 Aug 2.
Mitochondria-targeting cancer therapies have achieved unprecedented advances attributed to their superior ability for improving drug delivery efficiency and producing an enhanced therapeutic effect. Herein, we report a mitochondria-targeting camptothecin (CPT) polyprodrug system (MCPS) covalently decorated with a high-proportioned CPT content, which can realize drug release specifically responsive to a tumor microenvironment. The nonlinear structure of MCPS can form water-soluble unimolecular micelles with high micellar stability and improved drug accumulation in tumoral cells/tissues. Furthermore, a classical mitochondria-targeting agent, triphenylphosphonium bromide, was tethered in this prodrug system, which causes mitochondrial membrane potential depolarization and mediates the transport of CPT into mitochondria. The disulfide bond in MCPS can be cleaved by an intracellular reductant such as glutathione, leading to enhanced destruction of mitochondria DNA and cell apoptosis induced by a high level of reactive oxygen species. The systematic analyses both in vitro and in vivo indicated the excellent tumor inhibition effect and biosafety of MCPS, which is believed to be an advantageous nanoplatform for subcellular organelle-specific chemotherapy of cancer.
线粒体靶向癌症治疗取得了前所未有的进展,这归因于它们提高药物递送效率和产生增强治疗效果的卓越能力。在此,我们报告了一种线粒体靶向喜树碱(CPT)多前药系统(MCPS),它共价修饰有高比例的 CPT 含量,可以实现对肿瘤微环境特异性的药物释放。MCPS 的非线性结构可以形成具有高胶束稳定性和提高肿瘤细胞/组织内药物积累的水溶性单分子胶束。此外,一种经典的线粒体靶向剂三苯基膦溴化物被连接到该前药系统中,导致线粒体膜电位去极化,并介导 CPT 进入线粒体的运输。MCPS 中的二硫键可以被细胞内还原剂如谷胱甘肽切割,导致线粒体 DNA 的破坏增强和高水平活性氧诱导的细胞凋亡。体外和体内的系统分析表明,MCPS 具有优异的肿瘤抑制作用和生物安全性,有望成为癌症亚细胞器特异性化疗的有利纳米平台。