• LOGIN
    Login with username and password
Repository logo

BORIS Portal

Bern Open Repository and Information System

  • Publications
  • Theses
  • Research Data
  • Projects
  • Organizations
  • Researchers
  • More
  • Collections
  • Statistics
  • LOGIN
    Login with username and password
Repository logo
Unibern.ch
  1. Home
  2. Publications
  3. N-demethylation of N-methyl-4-aminoantipyrine, the main metabolite of metamizole.

N-demethylation of N-methyl-4-aminoantipyrine, the main metabolite of metamizole.

Details
Files
DOI
10.7892/boris.123161
Publisher DOI
10.1016/j.ejps.2018.05.003
PubMed ID
29746911
Abstract
Metamizole is an old analgesic used frequently in some countries. Active metabolites of metamizole are the non-enzymatically generated N-methyl-4-aminoantipyrine (4-MAA) and its demethylation product 4-aminoantipyrine (4-AA). Previous studies suggested that 4-MAA demethylation can be performed by hepatic cytochrome P450 (CYP) 3A4, but the possible contribution of other CYPs remains unclear. Using human liver microsomes (HLM), liver homogenate and HepaRG cells, we could confirm 4-MAA demethylation by CYPs. Based on CYP induction (HepaRG cells) and CYP inhibition (HLM) we could identify CYP2B6, 2C8, 2C9 and 3A4 as major contributors to 4-MAA demethylation. The 4-MAA demethylation rate by HLM was 280 pmol/mg protein/h, too low to account for in vivo 4-MAA demethylation in humans. Since peroxidases can perform N-demethylation, we investigated horseradish peroxidase and human myeloperoxidase (MPO). Horse radish peroxidase efficiently demethylated 4-MAA, depending on the hydrogen peroxide concentration. This was also true for MPO; this reaction was saturable with a K of 22.5 μM and a maximal velocity of 14 nmol/min/mg protein. Calculation of the entire body MPO capacity revealed that the demethylation capacity by granulocyte/granulocyte precursors was approximately 600 times higher than the liver capacity and could account for 4-MAA demethylation in humans. 4-MAA demethylation could also be demonstrated in MPO-expressing granulocyte precursor cells (HL-60). In conclusion, 4-MAA can be demethylated in the liver by several CYPs, but hepatic metabolism cannot fully explain 4-MAA demethylation in humans. The current study suggests that the major part of 4-MAA is demethylated by circulating granulocytes and granulocyte precursors in bone marrow.
Date Issued
2018-07-30
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Subjects
Cytochrome P450 (CYP) Metamizole Myeloperoxidase N-demethylation N-methyl-4-aminoantipyrine
Language(s)
en
Author(s)
Bachmann, Fabio
Duthaler, Urs
Rudin, Deborah
Krähenbühl, Stephan
Haschke, Manuel Martin  
Universitätsklinik für Allgemeine Innere Medizin  
Additional Credits
Universitätsklinik für Allgemeine Innere Medizin  
Journal
European journal of pharmaceutical sciences
Publisher
Elsevier
ISSN
0928-0987
Access(Rights)
restricted
Show full item
BORIS Portal
Bern Open Repository and Information System
Build: da6d1d [14.09. 16:14]
Explore
  • Projects
  • Funding
  • Publications
  • Research Data
  • Organizations
  • Researchers
  • Audiovisual Material
  • Software & other digital items
  • Events
More
  • About BORIS Portal
  • BORIS Portal & Open Science
  • Send Feedback
  • Cookie settings
  • Service Policy
Follow us on
  • Mastodon
  • YouTube
  • LinkedIn
UniBe logo
Repository logo COAR Notify