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Exploration of Long-Chain Vitamin e Metabolites for the Discovery of a Highly Potent, Orally Effective, and Metabolically Stable 5-LOX Inhibitor that Limits Inflammation

Authors :
Andreas Koeberle
Denis Séraphin
Stefan Lorkowski
Tiago Rodrigues
Oliver Werz
Daniela Schuster
Dimitri Bréard
Hermann Stuppner
Ida Cerqua
Antonietta Rossi
Simona Pace
Marta C. Marques
Alexander S. Mosig
Paul M. Jordan
Stephan Permann
Jana Gerstmeier
Martin Raasch
Gonçalo J. L. Bernardes
André Gollowitzer
Ulrike Garscha
Chau-Phi Dinh
Alexia Ville
Jean-Jacques Helesbeux
Fiorentina Roviezzo
Guillaume Viault
Elena Brunner
Pascal Richomme
Veronika Temml
Rossella Bilancia
Khaled Alsabil
Konstantin Loeser
Konstantin Neukirch
Neukirch, K.
Alsabil, K.
Dinh, C. -P.
Bilancia, R.
Raasch, M.
Ville, A.
Cerqua, I.
Viault, G.
Breard, D.
Pace, S.
Temml, V.
Brunner, E.
Jordan, P. M.
Marques, M. C.
Loeser, K.
Gollowitzer, A.
Permann, S.
Gerstmeier, J.
Lorkowski, S.
Stuppner, H.
Garscha, U.
Rodrigues, T.
Bernardes, G. J. L.
Schuster, D.
Seraphin, D.
Richomme, P.
Rossi, A.
Mosig, A. S.
Roviezzo, F.
Werz, O.
Helesbeux, J. -J.
Koeberle, A.
Neukirch, Konstantin [0000-0003-0630-1624]
Dinh, Chau-Phi [0000-0002-3683-3472]
Gollowitzer, André [0000-0003-1524-8298]
Stuppner, Hermann [0000-0001-8862-0201]
Rodrigues, Tiago [0000-0002-1581-5654]
Bernardes, Gonçalo J L [0000-0001-6594-8917]
Schuster, Daniela [0000-0002-9933-8938]
Séraphin, Denis [0000-0002-0509-5788]
Mosig, Alexander S [0000-0002-5687-2444]
Werz, Oliver [0000-0002-5064-4379]
Koeberle, Andreas [0000-0001-6269-5088]
Apollo - University of Cambridge Repository
Bernardes, Gonçalo JL [0000-0001-6594-8917]
Source :
Journal of Medicinal Chemistry
Publication Year :
2021

Abstract

Endogenous long-chain metabolites of vitamin E (LCMs) mediate immune functions by targeting 5-lipoxygenase (5-LOX) and increasing the systemic concentrations of resolvin E3, a specialized proresolving lipid mediator. SAR studies on semisynthesized analogues highlight α-amplexichromanol (27a), which allosterically inhibits 5-LOX, being considerably more potent than endogenous LCMs in human primary immune cells and blood. Other enzymes within lipid mediator biosynthesis were not substantially inhibited, except for microsomal prostaglandin E2 synthase-1. Compound 27a is metabolized by sulfation and β-oxidation in human liver-on-chips and exhibits superior metabolic stability in mice over LCMs. Pharmacokinetic studies show distribution of 27a from plasma to the inflamed peritoneal cavity and lung. In parallel, 5-LOX-derived leukotriene levels decrease, and the inflammatory reaction is suppressed in reconstructed human epidermis, murine peritonitis, and experimental asthma in mice. Our study highlights 27a as an orally active, LCM-inspired drug candidate that limits inflammation with superior potency and metabolic stability to the endogenous lead.

Details

Language :
English
Database :
OpenAIRE
Journal :
Journal of Medicinal Chemistry
Accession number :
edsair.doi.dedup.....197aa94407387a7b89fbecdcc110c28a