Pyruvaldehyde

aldo-keto reductase family 1 member B ; Homo sapiens







9 Article(s)
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Pub. Year
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1 31811113 Protective Effect of β-Glucogallin on Damaged Cataract Against Methylglyoxal Induced Oxidative Stress in Cultured Lens Epithelial Cells. 2019 Dec 7 2
2 27956549 Loss of Glyoxalase 1 Induces Compensatory Mechanism to Achieve Dicarbonyl Detoxification in Mammalian Schwann Cells. 2017 Feb 24 5
3 23747692 Evaluation of the prostaglandin F synthase activity of human and bovine aldo-keto reductases: AKR1A1s complement AKR1B1s as potent PGF synthases. 2013 Oct 1
4 22911800 Aldolase B knockdown prevents high glucose-induced methylglyoxal overproduction and cellular dysfunction in endothelial cells. 2012 1
5 12604218 Up-regulation of aldose reductase by the substrate, methylglyoxal. 2003 Feb 1 14
6 11306074 Metabolism of the 2-oxoaldehyde methylglyoxal by aldose reductase and by glyoxalase-I: roles for glutathione in both enzymes and implications for diabetic complications. 2001 Jan 30 4
7 9446106 [The role of methylglyoxal in the development of diabetic complications]. 1997 2
8 8636255 Increased levels of methylglyoxal-metabolizing enzymes in mononuclear and polymorphonuclear cells from insulin-dependent diabetic patients with diabetic complications: aldose reductase, glyoxalase I, and glyoxalase II--a clinical research center study. 1996 Feb 1
9 1537826 Reduction of trioses by NADPH-dependent aldo-keto reductases. Aldose reductase, methylglyoxal, and diabetic complications. 1992 Mar 5 1