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首页> 外文期刊>Oncology letters >HCV-E2 inhibits hepatocellular carcinoma metastasis by stimulating mast cells to secrete exosomal shuttle microRNAs
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HCV-E2 inhibits hepatocellular carcinoma metastasis by stimulating mast cells to secrete exosomal shuttle microRNAs

机译:HCV-E2通过刺激肥大细胞来分泌外泌体梭微大血管来抑制肝细胞癌转移

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摘要

Exosomal miRNAs are emerging as mediators of the interaction between mast cells (MCs) and tumor cells. The exosomal miRNAs can be internalized by liver cancer cells to inhibit cell metastasis. We explored the interaction between MCs and hepatocellular carcinoma (HCC) cells. We used hepatitis C virus E2 envelope glycoprotein (HCV-E2) to stimulate MCs and harvest MCs-derived exosomes to detect the miRNAs and changes of exosomal miRNAs before and after stimulation. Through miRNA microarray analysis, we identified 19 differentially expressed miRNAs in exosomes derived from MCs with or without HCV-E2 treatment. HCV-E2 not only increased the level of miRNA-490 in MCs and their secreted exosomes but also increased the levels of miRNA-490 in recipient HepG2 cells, which ultimately inhibited the ERK1/2 pathway. The transfection of antagomiR-490 significantly decreased the levels of miR-490 in MCs, MCs-derived exosomes, and recipient HepG2 cells and increased migration of HepG2, indicating that miR-490 is involved in the regulation of HepG2 cell migration. The present study suggests that MCs can inhibit HCC cell metastasis by inhibiting the ERK1/2 pathway by transferring the exosomal shuttle microRNAs into HCC cells, which provides new insights for the biological therapy of HCC induced by hepatitis C.
机译:外泌体miRNA作为肥大细胞(MCS)和肿瘤细胞之间相互作用的介质。外泌体miRNA可以通过肝癌细胞内化以抑制细胞转移。我们探讨了MCS和肝细胞癌(HCC)细胞之间的相互作用。我们使用丙型肝炎病毒E2封套糖蛋白(HCV-E2)刺激MCS和收获MCS衍生的外泌体以检测刺激前后外部miRNA的miRNA和变化。通过MiRNA微阵列分析,我们在来自MCS的外泌体中鉴定了19种差异表达的miRNA,其具有或不含HCV-E2处理。 HCV-E2不仅增加了MCS-490中的miRNA-490水平及其分泌的外来体,而且还增加了受体HepG2细胞中miRNA-490的水平,最终抑制了ERK1 / 2途径。抗血糖-490的转染显着降低了MCS,MCS衍生的外泌体和受体HepG2细胞中MiR-490的水平,并增加了HepG2的迁移,表明miR-490参与了Hepg2细胞迁移的调节。本研究表明,MCS通过将外泌体梭微大车分解为HCC细胞来抑制ERK1 / 2途径,可以通过抑制ERK1 / 2途径来抑制HCC细胞转移,这为甲型肝炎诱导的HCC生物学治疗提供了新的洞察。

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