首页> 美国卫生研究院文献>Journal of Cancer >Photothermal Treatment of Human Pancreatic Cancer Using PEGylated Multi-Walled Carbon Nanotubes Induces Apoptosis by Triggering Mitochondrial Membrane Depolarization Mechanism
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Photothermal Treatment of Human Pancreatic Cancer Using PEGylated Multi-Walled Carbon Nanotubes Induces Apoptosis by Triggering Mitochondrial Membrane Depolarization Mechanism

机译:聚乙二醇化多壁碳纳米管对胰腺癌的光热治疗通过触发线粒体膜去极化机制诱导细胞凋亡。

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摘要

Pancreatic cancer (PC) is one of the most lethal solid tumor in humans, with an overall 5-year survival rate of less than 5%. Thermally active carbon nanotubes have already brought to light promising results in PC research and treatment.We report here the construct of a nano-biosystem based on multi-walled carbon nanotubes and polyethylene glycol (PEG) molecules validated through AFM, UV-Vis and DLS. We next studied the photothermal effect of these PEG-ylated multi-walled carbon nanotubes (5, 10 and 50 μg/mL, respectively) on pancreatic cancer cells (PANC-1) and further analyzed the molecular and cellular events involved in cell death occurrence. Using cell proliferation, apoptosis, membrane polarization and oxidative stress assays for ELISA, fluorescence microscopy and flow cytometry we show here that hyperthermia following MWCNTs-PEG laser mediated treatment (808 nm, 2W) leads to mitochondrial membrane depolarization that activates the flux of free radicals within the cell and the oxidative state mediate cellular damage in PC cells via apoptotic pathway. Our results are of decisive importance especially in regard with the development of novel nano-biosystems capable to target mitochondria and to synergically act both as cytotoxic drug as well as thermally active agents in order to overcome one of the most common problem met in oncology, that of intrinsic resistance to chemotherapeutics.
机译:胰腺癌(PC)是人类中最具致死性的实体瘤之一,其5年总生存率不到5%。热活性碳纳米管已经在PC研究和治疗中展现出令人鼓舞的结果。我们在此报告基于多壁碳纳米管和通过AFM,UV-Vis和DLS验证的聚乙二醇(PEG)分子的纳米生物系统的构建。接下来,我们研究了这些PEG化的多壁碳纳米管(分别为5、10和50μg/ mL)对胰腺癌细胞(PANC-1)的光热效应,并进一步分析了与细胞死亡发生有关的分子和细胞事件。使用细胞增殖,细胞凋亡,膜极化和氧化应激试验进行ELISA,荧光显微镜和流式细胞仪检测,我们发现在MWCNTs-PEG激光介导的处理(808 nm,2W)之后,体温过高导致线粒体膜去极化,从而激活自由基通量细胞内的氧化态和氧化态通过凋亡途径介导PC细胞的细胞损伤。我们的结果具有决定性的重要性,特别是在开发能够靶向线粒体并协同充当细胞毒性药物和热活性剂的新型纳米生物系统方面,以克服肿瘤学中最常见的问题之一,即对化学疗法的内在抗性

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