Key Laboratory of Modern Chinese Medicines, China Pharmaceutical University, Nanjing 210009, PR China.
Center of Advanced Pharmaceuticals and Biomaterials, Ningbo Institute of Marine Medicine, Peking University, Ningbo 315832, China.
Nanoscale. 2024 Aug 29;16(34):15967-15983. doi: 10.1039/d4nr02382j.
The importance of copper homeostasis in mitochondria and copper-triggered modality of mitochondrial cell death have been confirmed. However, the existing copper-based nanoplatforms are focused on synergistic therapies while the intracellular therapeutic targets are relatively scattered. Effective integration of all targets within mitochondria to generate power coalescence remains a challenge. Herein, we developed a novel copper-based delivery system to trigger power coalescence and death vortex within tumor cell mitochondria. Specifically, a mitochondrial targeting "copper missile" loaded with curcumin (termed as Cur@CuS-TPP-HA, CCTH) was designed for cuproptosis/phototherapy/chemotherapy synergistic anti-tumor therapy. Once the CCTH NPs are shuttled to the mitochondria, near-infrared (NIR) irradiation initiates the release of copper ions and curcumin for drug accumulation in cancer cell mitochondria. An excess of copper ions and curcumin can activate cuproptosis and mitochondrial apoptosis pathways, respectively. When combined, they can cause an increase in reactive oxygen species (ROS), damage to mitochondrial DNA (mt-DNA), and a decrease in energy supply, thereby leading to a "vicious circle" of mitochondrial damage that further enhances the tumor-killing efficacy. As a consequence, this "copper missile" exhibits advanced anti-tumor effects as verified through assessments and evaluations using the 4T1 breast tumor model, providing a promising approach for cuproptosis-based synergistic anti-tumor therapy.
铜离子代谢平衡在维持线粒体功能中的重要性,以及铜离子触发的线粒体细胞死亡方式已得到证实。然而,现有的基于铜的纳米平台主要集中在协同治疗上,而细胞内的治疗靶点相对分散。有效地将所有靶点整合到线粒体中以产生协同作用仍然是一个挑战。在此,我们开发了一种新型的基于铜的递药系统,以在肿瘤细胞线粒体中引发协同的能量融合和死亡漩涡。具体而言,设计了一种装载姜黄素的线粒体靶向“铜导弹”(命名为 Cur@CuS-TPP-HA,CCTH),用于铜死亡/光疗/化疗协同抗肿瘤治疗。一旦 CCTH NPs 被转运到线粒体,近红外(NIR)照射就会引发铜离子和姜黄素的释放,从而使药物在癌细胞线粒体中积累。过量的铜离子和姜黄素分别可以激活铜死亡和线粒体凋亡途径。当它们结合在一起时,会导致活性氧(ROS)增加、线粒体 DNA(mt-DNA)损伤和能量供应减少,从而导致线粒体损伤的“恶性循环”,进一步增强肿瘤杀伤效果。因此,这种“铜导弹”在 4T1 乳腺癌模型中通过评估和评价得到了验证,表现出了先进的抗肿瘤效果,为基于铜死亡的协同抗肿瘤治疗提供了一种有前景的方法。