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智能肿瘤微环境响应型纳米前药用于体内解毒双硫仑及细胞内致死机制的探索。

Smart Tumor Microenvironment-Responsive Nano-Prodrug for Disulfiram Toxification In Situ and the Exploration of Lethal Mechanisms in Cells.

机构信息

State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, P. R. China.

University of Science and Technology of China, Hefei, Anhui 230026, P. R. China.

出版信息

Langmuir. 2022 Jan 11;38(1):584-592. doi: 10.1021/acs.langmuir.1c03256. Epub 2021 Dec 31.

Abstract

Disulfiram (DSF) is a clinical antialcoholism drug that has been confirmed to show anticancer bioactivity after chelating with Cu. Therefore, how to co-deliver DSF and Cu to tumor tissues and generate a smart response to the tumor microenvironment (TME) are the focus of repurposing DSF for the effective treatment of cancer. Herein, we fabricated facilely a smart nanosystem by coating tannic acid (TA) and Cu network on DSF, denoted as DSF@TA-Cu, which responses well to TME and forms CuET complex in situ. In such a way, besides the chemotherapy effect of CuET, the anticancer efficacy of the resulting nano-prodrug can further be augmented by a continuous Fenton-like reaction. We then tested the cytotoxicity DSF@TA-Cu with normal and cancerous cell lines. Finally, by constructing mitochondria-targeted nanoprobes, we monitored the changes in mitochondrial metabolism and explored the lethal mechanisms in A549 cells. We found that DSF@TA-Cu showed higher toxicity to cancerous cells. By analyzing the fluorescence images and surface-enhanced Raman scattering (SERS) spectra of mitochondria, we found that the DNA damage and the decrease in mitochondrial membrane potential (MMP) were closely related to the generation and accumulation of reactive oxygen species (ROS). Although activated related pathways try to counteract the effects of elevation of ROS, excessive ROS inevitably leads to apoptosis of cancer cells.

摘要

双硫仑(DSF)是一种临床抗酒精药物,在与 Cu 螯合后被证实具有抗癌生物活性。因此,如何将 DSF 和 Cu 共同递送到肿瘤组织中,并对肿瘤微环境(TME)产生智能响应,是重新利用 DSF 有效治疗癌症的重点。在此,我们通过在 DSF 上包覆单宁酸(TA)和 Cu 网络,简便地制备了一种智能纳米系统,记为 DSF@TA-Cu,它对 TME 有很好的响应,并在原位形成 CuET 配合物。通过这种方式,除了 CuET 的化疗作用外,所得纳米前药的抗癌功效还可以通过连续的芬顿样反应进一步增强。然后,我们用正常和癌细胞系测试了 DSF@TA-Cu 的细胞毒性。最后,通过构建线粒体靶向纳米探针,我们监测了 A549 细胞中线粒体代谢的变化,并探讨了其致死机制。我们发现 DSF@TA-Cu 对癌细胞的毒性更高。通过分析线粒体的荧光图像和表面增强拉曼散射(SERS)谱,我们发现 DNA 损伤和线粒体膜电位(MMP)的降低与活性氧(ROS)的产生和积累密切相关。虽然激活的相关途径试图抵消 ROS 升高的影响,但过多的 ROS 不可避免地导致癌细胞凋亡。

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