共 162 条
[21]
Blankenberg S., Rupprecht H.J., Bickel C., Torzewski M., Hafner G., Tiret L., Et al., Glutathione peroxidase 1 activity and cardiovascular events in patients with coronary artery disease, N Engl J Med, 349, pp. 1605-1613, (2003)
[22]
Fukai T., Folz R.J., Landmesser U., Harrison D.G., Extracellular superoxide dismutase and cardiovascular disease, Cardiovasc Res, 55, pp. 239-249, (2002)
[23]
Arcaro G., Zamboni M., Rossi L., Turcato E., Covi G., Armellini F., Et al., Body fat distribution predicts the degree of endothelial dysfunction in uncomplicated obesity, Int J Obes Relat Metab Disord, 23, pp. 936-942, (1999)
[24]
Cheang W.S., Wong W.T., Tian X.Y., Yang Q., Lee H.K., He G.-W., Et al., Endothelial nitric oxide synthase enhancer reduces oxidative stress and restores endothelial function in db/db mice, Cardiovasc Res, 92, pp. 267-275, (2011)
[25]
Hamilton C., Miller W., Al-Benna S., Brosnan M., Drummond R., McBride M., Et al., Strategies to reduce oxidative stress in cardiovascular disease, Clin Sci (Lond), 106, pp. 219-234, (2004)
[26]
Griendling K.K., Ushio-Fukai M., NADH/NADPH oxidase and vascular function, Trends Cardiovasc. Med., 7, pp. 301-307, (1997)
[27]
Berry C., Hamilton C.A., Brosnan M.J., Magill F.G., Berg G.A., McMurray J.J., Et al., Investigation into the sources of superoxide in human blood vessels angiotensin II increases superoxide production in human internal mammary arteries, Circulation, 101, pp. 2206-2212, (2000)
[28]
Inoguchi T., Li P., Umeda F., Yu H.Y., Kakimoto M., Imamura M., Et al., High glucose level and free fatty acid stimulate reactive oxygen species production through protein kinase C-dependent activation of NAD(P)H oxidase in cultured vascular cells, Diabetes, 49, pp. 1939-1945, (2000)
[29]
Dallaire P., Marette A., Obesity-linked insulin resistance: is nitric oxide the missing link, Can J Diabetes, 28, pp. 59-66, (2004)
[30]
Pacher P., Beckman J.S., Liaudet L., Nitric oxide and peroxynitrite in health and disease, Physiol Rev, 87, pp. 315-424, (2007)