College of Chemistry, Chemical Engineering and Materials Science, Key Laboratory of Molecular and Nano Probes, Ministry of Education, Collaborative Innovation Center of Functionalized Probes for Chemical Imaging in Universities of Shandong, Institute of Molecular and Nano Science, Shandong Normal University, Jinan 250014, P. R. China.
Theranostics. 2021 Jun 26;11(16):7869-7878. doi: 10.7150/thno.59593. eCollection 2021.
Chemotherapy, the most conventional modality for cancer therapy, usually brings serious side effects because of the low cancer-therapeutic specificity and bioavailability. It is of great significance for cancer treatment to develop new effective strategies to regulate biochemical reactions in organelles, enhance the specificity of chemotherapeutic drugs and reduce their side effects. We report herein a zeolitic imidazole framework-90 (ZIF-90) based nanoplatform, which was used to initiate a series of mitochondrial cascade reactions using ATP as a molecular switch for cancer therapy. The thioketal linked camptothecin (camptothecin prodrug, TK-CPT) and 2-Methoxyestradiol (2-ME) were encapsulated into the pores of ZIF-90 nanoparticles using a simple one-pot method, and the nanoplatform was finally coated with a layer of homologous cell membrane. Mitochondrial ATP can efficiently degrade ZIF-90 and then release the loaded 2-ME and CPT prodrugs. 2-ME can inhibit the activity of superoxide dismutase (SOD), which induces the up-regulation of reactive oxygen species (ROS) . The thioketal linkers in CPT prodrug can respond to ROS, thereby achieving subsequent release of parent CPT drug. This cascade of reactions can lead to prolonged high oxidative stress and cause continuous cancer cell apoptosis, due to the increased ROS level and the liberation of CPT. We constructed an ATP-triggered strategy using nanoscale ZIF-90 to initiate mitochondrial cascade reactions for cancer therapy. The ZIF-90 based nanoplatform exhibited low cytotoxicity, good mitochondria-targeting ability, and excellent therapeutic effect. experiments demonstrated that the growth of tumor can be efficiently inhibited in a mouse model. This ATP-triggered strategy to induce mitochondrial biochemical reactions offers more possibilities for developing organelle-targeted therapeutic platforms.
化疗是癌症治疗中最常规的方法,但由于癌症治疗的特异性和生物利用度低,通常会带来严重的副作用。开发新的有效策略来调节细胞器中的生化反应,增强化疗药物的特异性并降低其副作用,对于癌症治疗具有重要意义。我们在此报告了一种基于沸石咪唑酯骨架-90(ZIF-90)的纳米平台,该平台可利用 ATP 作为分子开关启动一系列线粒体级联反应,用于癌症治疗。硫缩酮连接的喜树碱(喜树碱前药,TK-CPT)和 2-甲氧基雌二醇(2-ME)通过简单的一锅法被包裹在 ZIF-90 纳米粒子的孔中,然后纳米平台被同源细胞膜包裹。线粒体 ATP 可以有效地降解 ZIF-90,然后释放负载的 2-ME 和 CPT 前药。2-ME 可以抑制超氧化物歧化酶(SOD)的活性,从而导致活性氧(ROS)的上调。CPT 前药中的硫缩酮连接可以响应 ROS,从而实现母体 CPT 药物的后续释放。这种级联反应会导致持续的高氧化应激并导致癌细胞持续凋亡,因为 ROS 水平增加和 CPT 的释放。我们构建了一种使用纳米级 ZIF-90 触发的策略,通过线粒体级联反应进行癌症治疗。基于 ZIF-90 的纳米平台表现出低细胞毒性、良好的线粒体靶向能力和优异的治疗效果。实验证明,在小鼠模型中可以有效地抑制肿瘤的生长。这种 ATP 触发的策略诱导线粒体生化反应为开发细胞器靶向治疗平台提供了更多可能性。
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