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Vascular Medicine (London, England)|January 1, 1996
The vascular biology of S-nitrosothiols, nitrosated derivatives of thiolsG R Upchurch, G N Welch, J Loscalzo
The Journal of Nutrition|April 1, 1996
Homocysteine, EDRF, and endothelial functionG R Upchurch, G N Welch, J Loscalzo
Hospital Practice (1995)|June 15, 1997
Homocysteine, oxidative stress, and vascular diseaseG N Welch, G R Upchurch, J Loscalzo
The Journal of Clinical Investigation|July 1, 1995
Glutathione peroxidase potentiates the inhibition of platelet function by S-nitrosothiolsJ E Freedman, B Frei, G N Welch, et al.
Atherosclerosis|July 25, 1997
Stimulation of endothelial nitric oxide production by homocyst(e)ineG R Upchurch, G N Welch, A J Fabian, et al.
The Journal of Clinical Investigation|December 1, 1995
Inhibition of neointimal proliferation in rabbits after vascular injury by a single treatment with a protein adduct of nitric oxideD S Marks, J A Vita, J D Folts, et al.
The Journal of Clinical Investigation|October 1, 1994
In vivo transfer of nitric oxide between a plasma protein-bound reservoir and low molecular weight thiolsJ S Scharfstein, J F Keaney, A Slivka, et al.
The Journal of Biological Chemistry|July 4, 1997
Homocyst(e)ine decreases bioavailable nitric oxide by a mechanism involving glutathione peroxidaseG R Upchurch, G N Welch, A J Fabian, et al.
Proceedings of the Association of American Physicians|February 14, 1998
Homocysteine-induced nitric oxide production in vascular smooth-muscle cells by NF-kappa B-dependent transcriptional activation of Nos2G N Welch, G R Upchurch, R S Farivar, et al.
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