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PMID: 10966497 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Mechanism of the inhibitory effect of OPB-9195 [(+/-)-2-isopropylidenehydrazono-4-oxo-thiazolidin-5-yla cetanilide] on advanced glycation end product and advanced lipoxidation end product formation.

Journal of the American Society of Nephrology : JASN ·Vol. 11 ·No. 9 ·2000-09-00 ·Pages 1719-1725

Miyata T, Ueda Y, Asahi K, Izuhara Y, Inagi R, Saito A, VAN Ypersele DE Strihou C, Kurokawa K

Abstract

The accumulation in uremic plasma of reactive carbonyl compounds (RCO) derived from both carbohydrates and lipids ("carbonyl stress") contributes to uremic toxicity by accelerating the advanced glycation and lipoxidation of proteins. It was previously demonstrated that OPB-9195 [(+/-)-2-isopropylidenehydrazono-4-oxo- thiazolidin-5-ylacetanilide] inhibited the in vitro formation of advanced glycation end products (AGE) in uremic plasma. This study was designed to elucidate the mechanism of action of OPB-9195 by further delineating the AGE and advanced lipoxidation end product (ALE) precursors targeted by this drug. The inhibitory effects of OPB-9195 on the formation of two AGE (N:epsilon-carboxymethyllysine and pentosidine) on bovine serum albumin incubated with various AGE precursors were examined. Inhibition of N:epsilon-carboxymethyllysine and pentosidine formation with OPB-9195 was more efficient than with aminoguanidine. OPB-9195 also proved effective in blocking the carbonyl amine chemical processes involved in the formation of two ALE (malondialdehyde-lysine and 4-hydroxynonenal-protein adduct). The efficiency of OPB-9195 was similar to that of aminoguanidine. When glucose-based peritoneal dialysis fluid was incubated in the presence of OPB-9195, a similar inhibition of AGE formation was observed. The direct effect of OPB-9195 on major glucose-derived RCO in peritoneal dialysis fluids was then evaluated. The effects of OPB-9195 could be accounted for by its ability to trap RCO. The concentrations of three major glucose-derived RCO (glyoxal, methylglyoxal, and 3-deoxy-glucosone) were significantly lower in the presence of OPB-9195 than in its absence. Aminoguanidine had a similar effect. In conclusion, OPB-9195 inhibits both AGE and ALE formation, probably through its ability to trap RCO. OPB-9195 might prove to be a useful tool to inhibit some of the effects of RCO-related uremic toxicity.

MeSH Terms
Aldehydes/metabolism Arachidonic Acid/metabolism Arginine/analogs & derivatives,antagonists & inhibitors Deoxyglucose/analogs & derivatives,analysis Dialysis Solutions/chemistry Glycation End Products, Advanced/antagonists & inhibitors,biosynthesis Glyoxal/analysis Guanidines/pharmacology Lipid Metabolism Lysine/analogs & derivatives,antagonists & inhibitors,metabolism Malondialdehyde/metabolism Oxidation-Reduction Peritoneal Dialysis Prodrugs/pharmacology Pyruvaldehyde/analysis Thiadiazoles/pharmacology Thiazolidines
Chemicals
Aldehydes Dialysis Solutions Glycation End Products, Advanced Guanidines OPB 9195 Prodrugs Thiadiazoles Thiazolidines Arachidonic Acid Malondialdehyde Glyoxal N(6)-carboxymethyllysine Pyruvaldehyde Arginine Deoxyglucose pentosidine 3-deoxyglucosone 4-hydroxy-2-nonenal Lysine pimagedine
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Miyata Toshio
Molecular and Cellular Nephrology, Institute of Medical Sciences and Department of Internal Medicine, Tokai University School of Medicine, Isehara, Kanagawa, Japan.
Ueda Yasuhiko
Molecular and Cellular Nephrology, Institute of Medical Sciences and Department of Internal Medicine, Tokai University School of Medicine, Isehara, Kanagawa, Japan.
Asahi Koichi
Molecular and Cellular Nephrology, Institute of Medical Sciences and Department of Internal Medicine, Tokai University School of Medicine, Isehara, Kanagawa, Japan.
Izuhara Yuko
Molecular and Cellular Nephrology, Institute of Medical Sciences and Department of Internal Medicine, Tokai University School of Medicine, Isehara, Kanagawa, Japan.
Inagi Reiko
Molecular and Cellular Nephrology, Institute of Medical Sciences and Department of Internal Medicine, Tokai University School of Medicine, Isehara, Kanagawa, Japan.
Saito Akira
Molecular and Cellular Nephrology, Institute of Medical Sciences and Department of Internal Medicine, Tokai University School of Medicine, Isehara, Kanagawa, Japan.
VAN Ypersele DE Strihou Charles
Service de Nephrologie, Université Catholique de Louvain, Brussels, Belgium.
Kurokawa Kiyoshi
Molecular and Cellular Nephrology, Institute of Medical Sciences and Department of Internal Medicine, Tokai University School of Medicine, Isehara, Kanagawa, Japan.
Article Info
Journal
Journal of the American Society of Nephrology : JASN
Abbr.
J Am Soc Nephrol
ISSN
1046-6673
Published
2000-09-00
Pages
1719-1725
Language
English
Region
United States
NLM ID
9013836
Subset
IM
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