肺结核患者全血中mir—21—5p、mir—361—5p的表达及临床意义(2)
综上所述,与正常人群相比,肺结核患者全血中mir-21-5p、mir-361-5p的表达均明显升高,这两种miRNA的异常高表达可能与肺结核的发病及疾病进展密切相关,其可以作为辅助诊断活动性肺结核的重要指标。
参考文献
[1] 刘光艳,郑虹. 检测肺结核早期患者血清miRNAs的临床意义[J]. 实用医院临床杂志,2013,10(5):193-194
[2] H Aleksandra, K Grzegorz, D Tatiana, et al. Mapping the human miRNA interactome by CLASH reveals frequent noncanonical binding[J]. Cell, 2013,153(3):654-65
[3] Wang Y, Zhang X, Li H, et al. The role of miRNA-29 family in cancer[J]. Eur J Cell Biol, 2013,92(3):123-8
[4] 陳鸣. 微小RNA对结核病发生发展及早期诊断的潜在价值[J]. 中华检验医学杂志,2014,37(5):330-333
[5] Sheedy FJ, Palsson-McDermott E, Hennessy EJ, et al. Negative regulation of TLR4 via targeting of the proinflammatory tumor suppressor PDCD4 by the microRNA miR-21[J]. Nat Immunol,2010,11(2):141-7
[6] Bose D, Jayaraj G, Suryawanshi H, et al. The tuberculosis drug streptomycin as a potential cancer therapeutic: inhibition of miR-21 function by directly targeting its precursor[J]. Angew Chem Int Ed Engl,2012,51(4):1019-23
[7] T Xie,J Liang,R Guo, et al. Comprehensive microRNA analysis in bleomycin-induced pulmonary fibrosis identifies multiple sites of molecular regulation[J]. Physiological Genomics, 2011, 43(9):479-87 (何超)
参考文献
[1] 刘光艳,郑虹. 检测肺结核早期患者血清miRNAs的临床意义[J]. 实用医院临床杂志,2013,10(5):193-194
[2] H Aleksandra, K Grzegorz, D Tatiana, et al. Mapping the human miRNA interactome by CLASH reveals frequent noncanonical binding[J]. Cell, 2013,153(3):654-65
[3] Wang Y, Zhang X, Li H, et al. The role of miRNA-29 family in cancer[J]. Eur J Cell Biol, 2013,92(3):123-8
[4] 陳鸣. 微小RNA对结核病发生发展及早期诊断的潜在价值[J]. 中华检验医学杂志,2014,37(5):330-333
[5] Sheedy FJ, Palsson-McDermott E, Hennessy EJ, et al. Negative regulation of TLR4 via targeting of the proinflammatory tumor suppressor PDCD4 by the microRNA miR-21[J]. Nat Immunol,2010,11(2):141-7
[6] Bose D, Jayaraj G, Suryawanshi H, et al. The tuberculosis drug streptomycin as a potential cancer therapeutic: inhibition of miR-21 function by directly targeting its precursor[J]. Angew Chem Int Ed Engl,2012,51(4):1019-23
[7] T Xie,J Liang,R Guo, et al. Comprehensive microRNA analysis in bleomycin-induced pulmonary fibrosis identifies multiple sites of molecular regulation[J]. Physiological Genomics, 2011, 43(9):479-87 (何超)