Barua Rajat S, Ambrose John A, Srivastava Sudhesh, DeVoe Mary C, Eales-Reynolds Lesley-Jane
Saint Vincent Catholic Medical Centers of New York, New York 10011, USA.
Circulation. 2003 May 13;107(18):2342-7. doi: 10.1161/01.CIR.0000066691.52789.BE. Epub 2003 Apr 21.
Our group has previously shown that human umbilical vein endothelial cells exposed to smokers' serum decreased nitric oxide (NO) production and endothelial nitric oxide synthase (eNOS) activity in the presence of increased eNOS expression. In the present study, we examined whether these observations extended to human coronary artery endothelial cells (HCAECs). In addition, the role of reactive oxygen species in the observed alterations was examined.
HCAECs were incubated with serum from 10 nonsmokers and 15 smokers for 12 hours with or without the addition of either polyethylene glycol-superoxide dismutase (PEG-SOD, 300 U/mL), PEG-SOD+PEG-catalase (1000 U/mL), chelerythrine (3 micromol/L), or tetrahydrobiopterin (20 micromol/L). At the end of incubation, NO, eNOS protein, and eNOS activity were measured from the same culture. HCAECs incubated with smokers' serum alone showed significantly lower NO production (P<0.05) and eNOS activity (P<0.005) but higher eNOS expression (P<0.005) compared with nonsmokers. In smokers, addition of PEG-SOD, PEG-SOD+PEG-catalase, or tetrahydrobiopterin significantly (P<0.05) improved NO levels and eNOS activity. Interestingly, in the same smokers, a significant decrease in eNOS expression was only seen with the addition of PEG-SOD+PEG-catalase (P<0.05) and treatment with PEG-SOD alone insignificantly increased eNOS expression.
The present study indicates that in vitro, HCAECs show similar changes in NO biosynthesis as human umbilical vein endothelial cells when exposed to smokers' serum and also confirms that oxidative stress plays a central role in smoking-mediated dysfunction of NO biosynthesis in endothelial cells. Furthermore, these data support other studies suggesting a role for hydrogen peroxide in the upregulation of eNOS.
我们的研究小组之前已经表明,在人脐静脉内皮细胞中,当内皮型一氧化氮合酶(eNOS)表达增加时,暴露于吸烟者血清会降低一氧化氮(NO)的生成和eNOS活性。在本研究中,我们检测了这些观察结果是否也适用于人冠状动脉内皮细胞(HCAECs)。此外,还研究了活性氧在观察到的变化中的作用。
将HCAECs与10名非吸烟者和15名吸烟者的血清一起孵育12小时,添加或不添加聚乙二醇超氧化物歧化酶(PEG-SOD,300 U/mL)、PEG-SOD + PEG过氧化氢酶(1000 U/mL)、白屈菜红碱(3 μmol/L)或四氢生物蝶呤(20 μmol/L)。孵育结束时,从同一培养物中测量NO、eNOS蛋白和eNOS活性。与非吸烟者相比,单独用吸烟者血清孵育的HCAECs显示出显著更低的NO生成(P<0.05)和eNOS活性(P<0.005),但eNOS表达更高(P<0.005)。在吸烟者中,添加PEG-SOD、PEG-SOD + PEG过氧化氢酶或四氢生物蝶呤显著(P<0.05)改善了NO水平和eNOS活性。有趣的是,在同一组吸烟者中,仅在添加PEG-SOD + PEG过氧化氢酶时eNOS表达显著降低(P<0.05),单独用PEG-SOD处理对eNOS表达的增加不显著。
本研究表明,在体外,HCAECs在暴露于吸烟者血清时,在NO生物合成方面显示出与人脐静脉内皮细胞相似的变化,并且还证实氧化应激在吸烟介导的内皮细胞NO生物合成功能障碍中起核心作用。此外,这些数据支持其他研究表明过氧化氢在eNOS上调中起作用。