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Showing papers on "Aldose published in 2006"


Journal ArticleDOI
01 Oct 2006-Diabetes
TL;DR: The results support the notion that aldose reductase is the key relay that converts hyperglycemia into glucose toxicity in neural and glial cell types in the retina.
Abstract: Previously studied inhibitors of aldose reductase were largely from two chemical classes, spirosuccinamide/hydantoins and carboxylic acids. Each class has its own drawbacks regarding selectivity, in vivo potency, and human safety; as a result, the pathogenic role of aldose reductase in diabetic retinopathy remains controversial. ARI-809 is a recently discovered aldose reductase inhibitor (ARI) of a new structural class, pyridazinones, and has high selectivity for aldose versus aldehyde reductase. To further test the possible pathogenic role of aldose reductase in the development of diabetic retinopathy, we examined the retinal effects of this structurally novel and highly selective ARI in insulinized streptozotocin-induced diabetic rats. ARI-809 treatment was initiated 1 month after diabetes induction and continued for 3 months at a dose that inhibited the polyol pathway in the retina of diabetic rats to a similar extent as sorbinil, a poorly selective hydantoin ARI previously shown to prevent retinopathy in this model. ARI-809 improved survival, inhibited cataract development, normalized retinal sorbitol and fructose, and protected the retina from abnormalities that also occur in human diabetes: neuronal apoptosis, glial reactivity, and complement deposition. Because ARI-809 is a novel chemotype highly selective for aldose reductase, these results support the notion that aldose reductase is the key relay that converts hyperglycemia into glucose toxicity in neural and glial cell types in the retina.

125 citations


Journal ArticleDOI
TL;DR: E. coli Asd provides a prototype structure for a new subgroup of PQQ-dependent soluble dehydrogenases that is distinct from the A. calcoaceticus sGdh subgroup, which is proposed to provide a low affinity for glucose but generic broad substrate specificity for aldose sugars.

47 citations


Journal ArticleDOI
TL;DR: It is shown by NMR that hydrogen exchange between substrate and solvent occurs during the reaction catalysed by PfPGI eliminating the possibility of a hydride-shift-based mechanism and 5-phospho-d-arabinonohydroxamate, a stable analogue of the putative cis-enediol intermediate, is the most potent inhibitor of the enzyme yet discovered.

29 citations


Journal ArticleDOI
TL;DR: A new phenolic glycoside, 6′-[(E)-2″-hydroxymethyl, 2″-butenoyl] arbutin, and two known phenolic Glycosides are isolated from the leaves of Heliciopsis lobata (Merr.) Sleum by various spectroscopic methods including 2D NMR spectroscopy.

11 citations


Journal ArticleDOI
TL;DR: The hyperfine structure of glycolaldehyde and 1,3-dihydroxyacetone has been observed using high-resolution microwave Fourier transform spectroscopy as mentioned in this paper.

10 citations


Journal ArticleDOI
TL;DR: Under other conditions of acetylation, the aldehydo derivatives were converted into the corresponding aldehydrol diacetates.

8 citations


Journal ArticleDOI
TL;DR: Given the polysaccharide 3H-incorporation, small release of monosaccharide products, and fragment A end-group analysis, thermolysis of UFH is likely limited to one site per molecule when protected by 2-hydroxypyridine.

3 citations