Overexpression of miR-1225 promotes the progression of breast cancer, resulting in poor prognosis

被引:0
作者
Shangfa Gao
Peng Shi
Zhishuai Tian
Xingwang Yang
Ning Liu
机构
[1] Chengwu People’s Hospital Affiliated to Shandong First Medical University,Department of General Surgery
[2] Shandong Provincial Hospital,Department of Gland Surgery
[3] Zibo City Linzi District People’s Hospital,Department of General Surgery
[4] China-Japan Union Hospital of Jilin University,Department of Breast Surgery
来源
Clinical and Experimental Medicine | 2021年 / 21卷
关键词
Breast cancer; miR-1225; Proliferation; Migration; Invasion; Prognosis;
D O I
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中图分类号
学科分类号
摘要
Breast cancer is the most common cancer among women, with metastasis as the principal cause of mortality. MiR-1225 has been reported to play roles in the progression of various cancers, but its role in breast cancer was unclear. The expression of miR-1225 was investigated in breast cancer tissues and cells by quantitative real-time PCR. The role of miR-1225 in the cell process of OS was analyzed by CCK-8 assay and Transwell assay. The prognostic value of miR-1225 was evaluated by Kaplan–Meier survival curves and Cox regression analysis. miR-1225 was significantly upregulated in breast cancer tissues, which was associated with the TNM stage of breast cancer patients. The prognosis of patients with high miR-1225 expression was worse than that of patients with low miR-1225 expression, which indicated that miR-1225 acted as an independent factor for the prognosis of breast cancer. Additionally, the upregulation of miR-1225 promoted cell proliferation, migration, and invasion of breast cancer, which suggested miR-1225 might be involved in the progression of breast cancer. JAK1 was identified as the direct target of miR-1225, which was also involved in cell proliferation, migration, and invasion of breast cancer. The overexpression of miR-1225 in breast cancer indicates a poor prognosis of patients and promotes the progression of breast cancer by targeting JAK1. miR-1225 may be a biomarker and therapeutic target for the treatment of breast cancer.
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页码:287 / 296
页数:9
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  • [1] Roman M(2019)Changes in mammographic density over time and the risk of breast cancer: an observational cohort study Breast 46 108-115
  • [2] Sala M(2014)Cancer statistics, 2014 CA Cancer J Clin 64 9-29
  • [3] Bare M(2009)Current molecular diagnostics of breast cancer and the potential incorporation of microRNA Expert Rev Mol Diagn 9 455-467
  • [4] Siegel R(2019)Electrochemotherapy in the treatment of breast cancer metastasis to the skin and subcutaneous tissue—multicenter experience Oncol Res Treat 42 47-51
  • [5] Ma J(2014)A 41-gene signature derived from breast cancer stem cells as a predictor of survival J Exp Clin Cancer Res 33 49-974
  • [6] Zou Z(2016)Plasma exosome microRNAs are indicative of breast cancer Breast Cancer Res 18 90-156
  • [7] Jemal A(2013)Progress in microRNA delivery J Control Release 172 962-287
  • [8] Zoon CK(2020)MicroRNA-30b-5p functions as a metastasis suppressor in colorectal cancer by targeting Rap1b Cancer Lett 477 144-1417
  • [9] Starker EQ(2019)miR-145-5p suppresses breast cancer progression by inhibiting SOX2 J Surg Res 236 278-4663
  • [10] Wilson AM(2020)Targeting of TLE3 by miR-3677 in human breast cancer promotes cell proliferation, migration and invasion Oncol Lett 19 1409-91