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May 7, 2026Chemical Research in Toxicology0 citations

Glycerolphosphorylethanolamine and Several Other Biochemical Amines Are Targets of Furan’s Reactive Metabolite in Rodents

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KVKarin R. VevangATAn TrinhMRMakenzie Raj

Key Points

  • This research aims to identify the biochemical amines targeted by furan's reactive metabolites in rodents.
  • Identifying amine targets of furan in rodent hepatocytes
  • Analyzing urine for mercapturic acid metabolites and their sulfoxides
  • Examining cross-links formed by GSH-BDA with various amines
  • Furan reacts with several amino acids and polyamines in rodents
  • Identified ethanolamine, glutamic acid, and taurine as additional targets
  • Mercapturic acid metabolites were found in the urine of furan-treated rodents

Abstract

-glutathionyl)succinaldehyde (GSH-BDA), that targets protein lysine residues and polyamines to form GSH-BDA-amine cross-links. In this report, five additional amine targets of BDA following its reaction with GSH are identified as GSH-BDA-amine cross-links in furan-exposed rodent hepatocytes. They are ethanolamine, glutamic acid, citrulline, glycerolphosphorylethanolamine (GPE), and taurine. Furthermore, the corresponding mercapturic acid metabolites and their sulfoxides were identified in urine from furan-treated rats and mice, indicating that these amines are targets in vivo. Of particular interest is the modification of GPE, which is an important component of lipids. Since other reactive dialdehydes target GPE and the result of its alkylation is linked to toxicity, lipid alkylation by furan metabolites may play an important role in the toxicity associated with furan exposure. This study generates important new possible biomarkers of effect that can be used in human epidemiological studies to assess furan's human health effects.

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Cite This Study

Vevang et al. (2026) studied this question.

synapsesocial.com/papers/69fbe2b3164b5133a91a20d8https://doi.org/10.1021/acs.chemrestox.6c00053
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