General Surgery, Affiliated Hospital of YouJiang Medical University For Nationalities, Baise 533000, Guangxi, China.
Gastrointestinal Medicine, Affiliated Hospital of YouJiang Medical University For Nationalities, Baise 533000, Guangxi, China.
Aging (Albany NY). 2020 Dec 26;12(24):26236-26247. doi: 10.18632/aging.202430.
Exosomes are small vesicles with a diameter of 30-150 nm secreted by cells, which can be used as signal carriers to transfer nucleic acids, proteins, lipids and other functional substances to the recipient cells and play a role in cell communication. Hepatocellular carcinoma is the fourth most common cause of cancer-related death worldwide. Studies have shown that long non-coding RNAs (lncRNAs) are involved in the development and progression of many types of tumors. Our present study found that linc-FAM138B was reduced in HCC tissues and cell lines, low expression of linc-FAM138B indicated a poor prognosis in HCC patients. Interestingly, linc-FAM138B could be packaged into cancer cells. And exo-FAM138B inhibited the proliferation, migration and invasion of HCC cells. Furthermore, linc-FAM138B sponged miR-765 levels. And exo-si-FAM138B promoted HCC progression, while deletion of miR-765 reversed the role of exo-si-FAM138B. In vivo tumorigenesis experiments showed that exo-FAM138B suppressed HCC growth via modulating miR-765. In conclusion, exo-linc-FAM138B secreted by cancer cells inhibited HCC development via targeting miR-765, which provided a new idea and perspective for in-depth understanding of the complex signal regulation in HCC process.
外泌体是细胞分泌的直径为 30-150nm 的小囊泡,可以作为信号载体将核酸、蛋白质、脂质和其他功能物质传递到受体细胞,并在细胞通讯中发挥作用。肝细胞癌是全球第四大常见的癌症相关死亡原因。研究表明,长非编码 RNA(lncRNA)参与了多种类型肿瘤的发生和发展。本研究发现 linc-FAM138B 在 HCC 组织和细胞系中减少,linc-FAM138B 低表达表明 HCC 患者预后不良。有趣的是,linc-FAM138B 可以被包装到癌细胞中。并且外泌体 FAM138B 抑制 HCC 细胞的增殖、迁移和侵袭。此外,linc-FAM138B 可以吸附 miR-765 水平。外泌体 si-FAM138B 促进 HCC 进展,而 miR-765 的缺失则逆转了外泌体 si-FAM138B 的作用。体内肿瘤生成实验表明,外泌体 FAM138B 通过调节 miR-765 抑制 HCC 生长。总之,癌细胞分泌的外泌体 linc-FAM138B 通过靶向 miR-765 抑制 HCC 发展,为深入了解 HCC 过程中的复杂信号调控提供了新的思路和视角。
Aging (Albany NY). 2020-12-26
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