ReactELISA method for quantifying methylglyoxal levels in plasma and cell cultures

Rasmus Kold-Christensen, Karina Kragh Jensen, Emil Smedegård-Holmquist, Lambert Kristiansen Sørensen, Jakob Hansen, Karl Anker Jørgensen, Peter Kristensen, Mogens Johannsen

Research output: Contribution to journalJournal articleResearchpeer-review

16 Citations (Scopus)
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Abstract

Methylglyoxal (MG) is a toxic glycolytic by-product associated with increased levels of inflammation and oxidative stress and has been linked to ageing-related diseases, such as diabetes and Alzheimer's disease. As MG is a highly reactive dicarbonyl compound, forming both reversible and irreversible adducts with a range of endogenous nucleophiles, measuring endogenous levels of MG are quite troublesome. Furthermore, as MG is a small metabolite it is not very immunogenic, excluding conventional ELISA for detection purposes, thus only more instrumentally demanding LC-MS/MS-based methods have demonstrated convincing quantitative data. In the present work we develop a novel bifunctional MG capture probe as well as a high specificity monoclonal antibody to finally setup a robust reaction-based ELISA (ReactELISA) method for detecting the highly reactive and low-level (nM) metabolite MG in human biological specimens. The assay is tested and validated against the current golden standard LC-MS/MS method in human blood plasma and cell-culture media. Furthermore, we demonstrate the assays ability to measure small perturbations of MG levels in growth media caused by a small molecule drug buthionine sulfoximine (BSO) of current clinical relevance. Finally, the assay is converted into a homogenous (no-wash) AlphaLISA version (ReactAlphaLISA), which offers the potential for operationally simple screening of further small molecules capable of perturbing cellular MG. Such compounds could be of relevance as probes to gain insight into MG metabolism as well as drug-leads to alleviate ageing-related diseases.

Original languageEnglish
Article number101252
JournalRedox Biology
Volume26
ISSN2213-2317
DOIs
Publication statusPublished - 1 Sept 2019
Externally publishedYes

Bibliographical note

Copyright © 2019 The Authors. Published by Elsevier B.V. All rights reserved.

Keywords

  • Buthionine sulfoximine
  • Cell culture
  • ELISA
  • Glyoxalase
  • Methylglyoxal
  • Plasma

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