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首页> 外文期刊>Asian Pacific Journal of Cancer Prevention >Effects of Multiple-target Anti-microRNA Antisense Oligodeoxyribonucleotides on Proliferation and Migration of Gastric Cancer Cells
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Effects of Multiple-target Anti-microRNA Antisense Oligodeoxyribonucleotides on Proliferation and Migration of Gastric Cancer Cells

机译:多靶抗微小RNA反义寡核苷酸对胃癌细胞增殖和迁移的影响

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Backgrounds: To investigate the inhibiting effects of multi-target anti-microRNA antisense oligonucleotide (MTg-AMOs) on proliferation and migration of human gastric cancer cells. Methods: Single anti-microRNA antisense oligonucleotides (AMOs) and MTg-AMOs for miR-221, 21, and 106a were designed and transfected into SGC7901, a gastric cancer cell line, to target the activity of these miRNAs. Their expression was analyzed using stem-loop RT-PCR and effects of MTg-AMOs on human gastric cancer cells were determined using the following two assay methods: CCK8 for cell proliferation and transwells for migration. Results: In the CCK-8 cell proliferation assay, was selected as the preferred concentration of MTg-AMOs and incubation time was 72 hours. Under these experimental conditions, MTg-AMOs demonstrated better suppression of the expression of miR-221, miR-106a, miR-21 in gastric cancer cells than that of single AMOs (P = 0.014, 0.024; 0.038, respectively). Migration activity was also clearly decreased as compared to those in randomized and blank control groups ( Vs , P Vs , P 0.01). Conclusions: MTg-AMOs can specifically inhibit the expression of multiple miRNAs, and effectively antagonize proliferation and migration of gastric cancer cells promoted by oncomirs.
机译:背景:探讨多靶抗微小RNA反义寡核苷酸(MTG-AMOS)对人胃癌细胞增殖和迁移的抑制作用。方法:针对miR-221,21和106a的单抗体抗微瘤反义寡核苷酸(AMOS)和MTG-AMOs被设计并转染到SGC7901,胃癌细胞系,以靶向这些miRNA的活性。使用茎 - 环RT-PCR分析它们的表达,使用以下两种测定方法测定MTG-AMOS对人胃癌细胞的影响:CCK8用于细胞增殖和转移进行迁移。结果:在CCK-8细胞增殖测定中,选择优选的MTG-AMOS和孵育时间为72小时。在这些实验条件下,MTG-AMOS明确地抑制了胃癌细胞中miR-221,miR-106a,miR-21的表达,而不是单个amos(p = 0.014,0.024; 0.038)。与随机和空白对照组(VS,P VS,P <0.01)相比,迁移活性也明显降低。结论:MTG-AMOS可以特异性抑制多种miRNA的表达,并有效地拮抗癌症促进的胃癌细胞的增殖和迁移。

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