The role of miR-221 in the injury induced by hydrogen peroxide in rat myocardial cells
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    Abstract:

    Objective To explore the role of miR-221 in the injury induced by hydrogen peroxide (H2O2) in rat myocardial cells (H9c2). Methods The viability of H9c2 cell induced by cell different concentrations of H2O2 was determined by MTT. The expression of miR-221 was detected by RT-PCR method. The miR-221 inhibitor and negative control were transferred into H9c2 cells by Lipofectamine 2000, then the cells were divided into normal control group, model control group (H2O2 group), negative control group (H2O2+ negative control group), inhibition group (H2O2+miR-221 inhibitor group). The cell viability was measured by MTT assay. Cell apoptosis was detected by acridine orange staining method. The expression of Bcl-2, Bax, phosphatase and tensin homolog deleted on chromosome ten (PTEN, p-protein kinase B (AKT) were assayed by Western Blot. Results 0,25,50,100,200,400 μmol/L H2O2 inhibited H9c2 cell activity gradually, of which 200 mol/L inhibition of cell viability moderate, so as a subsequent induction dose. Compared with normal control group, cell viability was decreased (P< 0.01), cell apoptotic rat was increased (P< 0.01), the expression of Bax and PTEN was upregulated (P< 0.01), the expression of Bcl-2 and p-AKT was downregulated (P< 0.01) in model control group and negative control group. Compared with model control group and negative control group, inhibition group proves the contrary. Conclusions Down-expression of miR-221 could significantly inhibit oxidative stress damage in H9c2 cells, which related to regulation of PTEN/AKT signal pathway.

    Reference
    [1] 王全伟, 凡文博, 王智昊, 等. 氧化应激与心血管疾病关系的研究进展[J]. 中国老年学杂志, 2014,34(1):270-273.
    [2] Bello-Klein A, Khaper N, Llesuy S, et al. Oxidative stress and antioxidant strategies in cardiovascular disease[J]. Oxid Med Cell Longev, 2014,2014:678741.
    [3] Gambari R, Brognara E, Spandidos DA, et al. Targeting oncomiRNAs and mimicking tumor suppressor miRNAs:Nuew trends in the development of miRNA therapeutic strategies in oncology (Review)[J]. Int J Oncol, 2016,49(1):5-32.
    [4] Nouraee N, Mowla SJ. miRNA therapeutics in cardiovascular diseases:promises and problems[J]. Front Genet, 2015,6:232.
    [5] Souza RW, Fernandez GJ, Cunha JP, et al. Regulation of cardiac microRNAs induced by aerobic exercise training during heart failure[J]. Am J Physiol Heart Circ Physiol, 2015,309(10):H1629-H1641.
    [6] Coskunpinar E, Cakmak HA, Kalkan AK, et al. Circulating miR-221-3p as a novel marker for early prediction of acute myocardial infarction[J]. Gene, 2016,591(1):90-96.
    [7] Costantino S, Paneni F, Luscher TF, et al. MicroRNA profiling unveils hyperglycaemic memory in the diabetic heart[J]. Eur Heart J, 2016,37(6):572-576.
    [8] Sayed AS, Xia K, Salma U, et al. Diagnosis, prognosis and therapeutic role of circulating miRNAs in cardiovascular diseases[J]. Heart Lung Circ, 2014,23(6):503-510.
    [9] 陶瑾, 李素芳, 徐明. MicroRNA:新的心血管疾病生物标志物[J]. 生理科学进展, 2011,42(5):335-339.
    [10] Xu J, Tang Y, Bei Y, et al. miR-19b attenuates H2O2-induced apoptosis in rat H9C2 cardiomyocytes via targeting PTEN[J]. Oncotarget, 2016,7(10):10870-10878.
    [11] Li T, Liang S, Zhang Y, et al. Effects of microRNA-139 on myocardial cell injury induced by oxidative stress[J]. Int J Clin Exp Med, 2015,8(11):19994-20001.
    [12] 邢慧慧, 刘晓峰, 刘长江, 等. miR-221在肿瘤中的研究进展[J]. 医学研究杂志, 2014,43(8):14-16.
    [13] Chen Q, Zhou Y, Richards AM, et al. Up-regulation of miRNA-221 inhibits hypoxia/reoxygenation-induced autophagy through the DDIT4/mTORC1 and Tp53inp1/p62 pathways[J]. Biochem Biophys Res Commun, 2016,474(1):168-174.
    [14] 钟源, 孙善全. 番茄红素对心肌细胞氧化应激损伤的保护作用[J]. 重庆医学, 2015,44(9):1157-1161.
    [15] Wang W, Wang L, Yang H, et al. Protective effects of yindanxinnaotong capsule in a rat model of myocardial ischemia/reperfusion injury[J]. J Tradit Chin Med, 2014,34(6):699-709.
    [16] Miyata S, Fukuda Y, Tojima H, et al. Mechanism of the inhibition of leukemia cell growth and induction of apoptosis through the activation of ATR and PTEN by the topoisomerase inhibitor 3EZ, 20Ac-ingenol[J]. Leuk Res, 2015,39(9):927-932.
    [17] 韩贵宾, 张寿, 孙薇薇, 等. 尼古丁抑制MIA诱导的骨关节炎软骨细胞凋亡[J]. 中国比较医学杂志, 2016,26(3):40-45.
    [18] Zhu J, Liu F, Wu Q, et al. MiR-221 increases osteosarcoma cell proliferation, invasion and migration partly through the downregulation of PTEN[J]. Int J Mol Med, 2015,36(5):1377-1383.
    [19] Yang W, Yang Y, Xia L, et al. MiR-221 Promotes Capan-2 Pancreatic Ductal Adenocarcinoma Cells Proliferation by Targeting PTEN-Akt[J]. Cell Physiol Biochem, 2016,38(6):2366-2374.
    [20] Ye Z, Hao R, Cai Y, et al. Knockdown of miR-221 promotes the cisplatin-inducing apoptosis by targeting the BIM-Bax/Bak axis in breast cancer[J]. Tumour Biol, 2016,37(4):4509-4515.
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  • Received:September 14,2016
  • Online: June 01,2017
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