All-stage targeted nanodiscs for glioma treatment by inducing cuproptosis and apoptosis of cancer cells and cancer stem cells
作者:Yuan Ding, Ruohan Chen, Jianfen Zhou, Yanning Bao, Nana Meng, Xudong Zheng, Shengmin Yang, Jiasheng Lu, Zhixuan Jiang, Yu Liu, Cao Xie, Linwei Lu, Weiyue Lu · 发表于:Asian Journal of Pharmaceutical Sciences · 年份:2024 · DOI:10.1016/j.ajps.2024.101010 · 被引用次数:4 · 研究领域:Nanoparticle-Based Drug Delivery、Nanoplatforms for cancer theranostics、Graphene and Nanomaterials Applications
There remain several intractable challenges for chemotherapy in glioma treatment, including the blood-brain barrier (BBB), blood-brain tumor barrier (BBTB), and tumor heterogeneity caused by cancer stem cells (CSCs), which are resistant to conventional chemotherapy. Here, we established a nano strategy to kill glioma cells and CSCs, combining carfilzomib and bis(diethyldithiocarbamate)copper. The synergistic drug combination disturbed cell protein metabolism at different stages and induced apoptosis and cuproptosis. The Y-shaped targeting ligand pHA-VAP-modified nanodiscs were designed to help the chemotherapeutic agents cross the BBB/BBTB and finally accumulate in tumor site. This all-stage targeting and all-stage treatment nanomedicine significantly prolonged the survival in glioma-bearing mice and might inspire the rational design of advanced drug delivery platforms. Challenges for chemotherapy in glioma include the blood-brain barrier (BBB), blood-brain tumor barrier (BBTB), and tumor heterogeneity caused by cancer stem cells (CSCs), which are resistant to conventional chemotherapy. A novel strategy for glioma-targeted treatment was established, combining carfilzomib (CFZ) and bis(diethyldithiocarbamate)copper (CuET) in Y-shaped peptide pHA-VAP (pV)-modified nanodiscs (pV-ND(CFZ/CuET)), which exhibited superior BBB/BBTB penetrating abilities. The strong synergistic drug combination eliminated both glioma cells and CSCs by inducing apoptosis and cuproptosis through disrupt...