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FEBS Letters|July 28, 1997
The 58 kDa mouse selenoprotein is a BCNU-sensitive thioredoxin reductaseS Gromer, R H Schirmer, K BeckerCellular and Molecular Life Sciences : CMLS|October 19, 2005
Human selenoproteins at a glanceS Gromer, J K Eubel, B L Lee, et al.European Journal of Biochemistry|September 30, 2000
Thioredoxin reductase as a pathophysiological factor and drug targetK Becker, S Gromer, R H Schirmer, et al.Pediatric Research|February 7, 2001
Antioxidant status and nitric oxide in the malnutrition syndrome kwashiorkorA Fechner, C Böhme, S Gromer, et al.Proceedings of the National Academy of Sciences of the United States of America|April 15, 1997
The mechanism of thioredoxin reductase from human placenta is similar to the mechanisms of lipoamide dehydrogenase and glutathione reductase and is distinct from the mechanism of thioredoxin reductase from Escherichia coliL D Arscott, S Gromer, R H Schirmer, et al.Analytical Biochemistry|February 26, 1999
Synthesis of 5,5'-dithiobis(2-nitrobenzamides) as alternative substrates for trypanothione reductase and thioredoxin reductase: a microtiter colorimetric assay for inhibitor screeningE Davioud-Charvet, K Becker, V Landry, et al.The Journal of Biological Chemistry|August 1, 1998
Human placenta thioredoxin reductase. Isolation of the selenoenzyme, steady state kinetics, and inhibition by therapeutic gold compoundsS Gromer, L D Arscott, C H Williams, et al.Redox Report : Communications in Free Radical Research|November 2, 2005
Effects of antioxidants on glutathione levels and clinical recovery from the malnutrition syndrome kwashiorkor--a pilot studyK Becker, J Pons-Kühnemann, A Fechner, et al.Redox Report : Communications in Free Radical Research|September 6, 2011
The bacterial redox signaller pyocyanin as an antiplasmodial agent: comparisons with its thioanalog methylene blueD M Kasozi, S Gromer, H Adler, et al.Pageof 1