Methylglyoxal and glyoxal are endogenous α-oxoaldehyde metabolites and substrates of the glyoxalase system. These and related α-oxoaldehydes are often determined in cell, tissue and body fluid samples by derivatization with 1,2-diaminobenzene and similar compounds. Peroxidase activity in physiological tissues is a potential interference in estimation of methylglyoxal and glyoxal as it catalyses the conversion of 1,2-diaminobenzene into trace amounts of these dicarbonyl metabolites. Residual peroxidase activity in deproteinized extracts is found to cause significant interference in methylglyoxal and glyoxal estimations. This interference is blocked by the addition of sodium azide in the derivatizing buffer. Estimates of methylglyoxal concentration thereby obtained are in keeping with those predicted by systems modelling of methylglyoxal glycation kinetics in situ. Blocking sample peroxidase activity is important to avoid overestimation in the measurement of glyoxal and methylglyoxal. A dicarbonyl assay protocol resistant to interferences is described in the present article.
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Conference Article|
March 20 2014
Assay of methylglyoxal and glyoxal and control of peroxidase interference
Paul J. Thornalley;
Paul J. Thornalley
1
*Clinical Sciences Research Laboratories, Warwick Medical School, University of Warwick, University Hospital, Coventry CV2 2DX, U.K
1To whom correspondence should be addressed (emailP.J.Thornalley@warwick.ac.uk).
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Naila Rabbani
Naila Rabbani
*Clinical Sciences Research Laboratories, Warwick Medical School, University of Warwick, University Hospital, Coventry CV2 2DX, U.K
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Publisher: Portland Press Ltd
Received:
January 07 2014
Online ISSN: 1470-8752
Print ISSN: 0300-5127
© The Authors Journal compilation © 2014 Biochemical Society
2014
Biochem Soc Trans (2014) 42 (2): 504–510.
Article history
Received:
January 07 2014
Citation
Paul J. Thornalley, Naila Rabbani; Assay of methylglyoxal and glyoxal and control of peroxidase interference. Biochem Soc Trans 1 April 2014; 42 (2): 504–510. doi: https://doi.org/10.1042/BST20140009
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