首页> 美国卫生研究院文献>Pharmaceutics >An Intrinsic Mitochondrial Pathway Is Required for Phytic Acid-Chitosan-Iron Oxide Nanocomposite (Phy-CS-MNP) to Induce G0/G1 Cell Cycle Arrest and Apoptosis in the Human Colorectal Cancer (HT-29) Cell Line
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An Intrinsic Mitochondrial Pathway Is Required for Phytic Acid-Chitosan-Iron Oxide Nanocomposite (Phy-CS-MNP) to Induce G0/G1 Cell Cycle Arrest and Apoptosis in the Human Colorectal Cancer (HT-29) Cell Line

机译:植酸-壳聚糖-氧化铁纳米复合物(Phy-CS-MNP)诱导人结肠直肠癌(HT-29)细胞G0 / G1细胞周期阻滞和凋亡需要线粒体内在途径。

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摘要

Magnetic iron oxide nanoparticles are among the most useful metal nanoparticles in biomedical applications. A previous study had confirmed that phytic acid-chitosan-iron oxide nanocomposite (Phy-CS-MNP) exhibited antiproliferative activity towards human colorectal cancer (HT-29) cells. Hence, in this work, we explored the in vitro cytotoxicity activity and mechanistic action of Phy-CS-MNP nanocomposite in modulating gene and protein expression profiles in HT-29 cell lines. Cell cycle arrest and apoptosis were evaluated by NovoCyte Flow Cytometer. The mRNA changes (cyclin-dependent kinase 4 (Cdk4), vascular endothelial growth factor A (VEGFA), c-Jun N-terminal kinase 1 (JNK1), inducible nitric oxide synthase (iNOS), and matrix metallopeptidase 9 (MMP9)) and protein expression (nuclear factor-kappa B (NF-κB) and cytochrome c) were assessed by quantitative real-time polymerase chain reaction (PCR) and western blotting, respectively. The data from our study demonstrated that treatment with Phy-CS-MNP nanocomposite triggered apoptosis and G0/G1 cell cycle arrest. The transcriptional activity of JNK1 and iNOS was upregulated after treatment with 90 μg/mL Phy-CS-MNP nanocomposite. Our results suggested that Phy-CS-MNP nanocomposite induced apoptosis and cell cycle arrest via an intrinsic mitochondrial pathway through modulation of Bax and Bcl-2 and the release of cytochrome c from the mitochondria into the cytosol.
机译:磁性氧化铁纳米粒子是生物医学应用中最有用的金属纳米粒子。先前的研究已经证实,植酸-壳聚糖-氧化铁纳米复合材料(Phy-CS-MNP)对人结肠直肠癌(HT-29)细胞具有抗增殖活性。因此,在这项工作中,我们探索了Phy-CS-MNP纳米复合材料在调节HT-29细胞系中基因和蛋白质表达谱中的体外细胞毒性活性和机理。通过NovoCyte流式细胞仪评估细胞周期停滞和凋亡。 mRNA变化(细胞周期蛋白依赖性激酶4(Cdk4),血管内皮生长因子A(VEGFA),c-Jun N端激酶1(JNK1),诱导型一氧化氮合酶(iNOS)和基质金属肽酶9(MMP9))通过定量实时聚合酶链反应(PCR)和蛋白质印迹分别评估蛋白质表达(核因子-κB(NF-κB)和细胞色素c)。我们研究的数据表明,用Phy-CS-MNP纳米复合材料治疗可触发细胞凋亡和G0 / G1细胞周期阻滞。用90μg/ mL Phy-CS-MNP纳米复合材料处理后,JNK1和iNOS的转录活性上调。我们的研究结果表明,Phy-CS-MNP纳米复合材料通过内在的线粒体途径通过调节Bax和Bcl-2以及从线粒体向细胞溶胶释放细胞色素c诱导细胞凋亡和细胞周期停滞。

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