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首页> 外文期刊>Immunopharmacology >Inhibition of inducible nitric oxide synthase gene expression and nitric oxide synthesis in vascular smooth muscle cells by granulocyte-colony stimulating factor in vitro.
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Inhibition of inducible nitric oxide synthase gene expression and nitric oxide synthesis in vascular smooth muscle cells by granulocyte-colony stimulating factor in vitro.

机译:粒细胞集落刺激因子体外抑制血管平滑肌细胞中可诱导型一氧化氮合酶基因表达和一氧化氮合成。

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摘要

Clinical and experimental evidence suggests that granulocyte-colony stimulating factor (G-CSF) acts as an anti-inflammatory modulator with beneficial effects in severe inflammatory diseases, e.g., sepsis and septic shock. Excessive production of nitric oxide (NO) is regarded as a potent mediator of the vascular changes leading to systemic hypotension that occurs during sepsis. Therefore, the aim of the present study was to investigate the influence of G-CSF on inducible nitric oxide synthase (iNOS) gene expression and NO synthesis in vascular smooth muscle cells (VSMC). Qualitative and quantitative analyses of iNOS cDNA revealed that G-CSF significantly reduced interferon-gamma/lipopolysaccharide (IFN-gamma/LPS) dependent iNOS gene expression (P < 0.05) following 6, 18, 24, and 48 h incubation periods. In addition, the co-application of G-CSF resulted in a decreased IFN-gamma/LPS mediated iNOS protein generation as detected by immunoblotting methods after 24 and 48 h. Measurement of the stable NO metabolites showed a significant reduction of nitriteitrate concentrations following co-incubation of VSMC with G-CSF + IFN-gamma/LPS (242.57 +/- 10.73 nmol NO2-/NO3-/mg cell protein, n = 8) as compared to IFN-gamma/LPS treatment (306.20 +/- 19.26 nmol NO2-/NO3-/mg cell protein, n = 8, P < 0.05) following a 24-h incubation protocol. This inhibitory effect of G-CSF was still present after a 48 h incubation period (G-CSF + IFN-gamma/LPS: 319.56 +/- 6.26 nmol NO2-/NO3-/mg cell protein; IFN-gamma/LPS: 489.20 +/- 27.15 nmol NO2-/NO3-/mg cell protein (P < 0.05), n = 8, respectively). The present findings suggest that inhibition of iNOS gene expression and NO generation in VSMC might be one of the protective anti-inflammatory effects of G-CSF during sepsis.
机译:临床和实验证据表明,粒细胞集落刺激因子(G-CSF)起到抗炎调节剂的作用,对严重的炎性疾病,例如败血症和败血性休克具有有益作用。一氧化氮(NO)的过量产生被认为是导致败血症期间发生系统性低血压的血管变化的有效介体。因此,本研究的目的是研究G-CSF对血管平滑肌细胞(VSMC)中诱导型一氧化氮合酶(iNOS)基因表达和NO合成的影响。 iNOS cDNA的定性和定量分析表明,在6、18、24和48 h的潜伏期后,G-CSF显着降低了依赖干扰素-γ/脂多糖(IFN-γ/ LPS)的iNOS基因表达(P <0.05)。此外,G-CSF的共同使用导致IFN-γ/ LPS介导的iNOS蛋白生成减少,这是通过免疫印迹法在24和48小时后检测到的。 VSMC与G-CSF +IFN-γ/ LPS共温育后,稳定NO代谢产物的测量显示亚硝酸盐/硝酸盐浓度显着降低(242.57 +/- 10.73 nmol NO2- / NO3- / mg细胞蛋白,n = 8)与24小时孵育方案后的IFN-γ/ LPS处理(306.20 +/- 19.26 nmol NO2- / NO3- / mg细胞蛋白,n = 8,P <0.05)相比。 G-CSF的这种抑制作用在48小时的温育期后仍然存在(G-CSF +IFN-γ/ LPS:319.56 +/- 6.26 nmol NO2- / NO3- / mg细胞蛋白;IFN-γ/ LPS:489.20 +/- 27.15 nmol NO2- / NO3- / mg细胞蛋白(P <0.05),n = 8)。目前的发现表明,抑制VSMC中iNOS基因表达和NO生成可能是败血症期间G-CSF的保护性抗炎作用之一。

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