Synthesis and biological studies of ...
Document type :
Article dans une revue scientifique: Article original
Title :
Synthesis and biological studies of "Polycerasoidol" and "trans-δ-Tocotrienolic acid" derivatives as PPARα and/or PPARγ agonists
Author(s) :
Vila, Laura [Auteur]
Universitat de València = University of Valencia [UV]
Cabedo, Nuria [Auteur]
Universitat de València = University of Valencia [UV]
Villarroel-Vicente, Carlos [Auteur]
Universitat de València = University of Valencia [UV]
García, Ainhoa [Auteur]
Universitat de València = University of Valencia [UV]
Bernabeu, Álvaro [Auteur]
Universitat de València = University of Valencia [UV]
Hennuyer, Nathalie [Auteur]
Récepteurs Nucléaires, Maladies Métaboliques et Cardiovasculaires - U 1011 [RNMCD]
Staels, Bart [Auteur]
Récepteurs Nucléaires, Maladies Métaboliques et Cardiovasculaires - U 1011 [RNMCD]
Franck, Xavier [Auteur]
Chimie Organique et Bioorganique : Réactivité et Analyse [COBRA]
Figadère, Bruno [Auteur]
Biomolécules : Conception, Isolement, Synthèse [BioCIS]
Sanz, María-Jesús [Auteur]
Universitat de València = University of Valencia [UV]
Cortes, Diego [Auteur]
Universitat de València = University of Valencia [UV]
Universitat de València = University of Valencia [UV]
Cabedo, Nuria [Auteur]
Universitat de València = University of Valencia [UV]
Villarroel-Vicente, Carlos [Auteur]
Universitat de València = University of Valencia [UV]
García, Ainhoa [Auteur]
Universitat de València = University of Valencia [UV]
Bernabeu, Álvaro [Auteur]
Universitat de València = University of Valencia [UV]
Hennuyer, Nathalie [Auteur]

Récepteurs Nucléaires, Maladies Métaboliques et Cardiovasculaires - U 1011 [RNMCD]
Staels, Bart [Auteur]

Récepteurs Nucléaires, Maladies Métaboliques et Cardiovasculaires - U 1011 [RNMCD]
Franck, Xavier [Auteur]
Chimie Organique et Bioorganique : Réactivité et Analyse [COBRA]
Figadère, Bruno [Auteur]
Biomolécules : Conception, Isolement, Synthèse [BioCIS]
Sanz, María-Jesús [Auteur]
Universitat de València = University of Valencia [UV]
Cortes, Diego [Auteur]
Universitat de València = University of Valencia [UV]
Journal title :
Bioorganic and Medicinal Chemistry
Pages :
116532
Publisher :
Elsevier
Publication date :
2022
ISSN :
0968-0896
English keyword(s) :
2-Prenylated benzopyrans
polycerasoidol analogs
tocotrienol analogs
Grignard/Johnson-Claisen rearrangement
Wittig olefination
hPPAR activity
polycerasoidol analogs
tocotrienol analogs
Grignard/Johnson-Claisen rearrangement
Wittig olefination
hPPAR activity
HAL domain(s) :
Chimie/Chimie thérapeutique
Chimie/Chimie organique
Chimie/Chimie organique
English abstract : [en]
2-Prenylated benzopyrans represent a class of natural and synthetic compounds showing a wide range of significant activities. Polycerasoidol is a natural prenylated benzopyran isolated from the stem bark of Polyalthia ...
Show more >2-Prenylated benzopyrans represent a class of natural and synthetic compounds showing a wide range of significant activities. Polycerasoidol is a natural prenylated benzopyran isolated from the stem bark of Polyalthia cerasoides (Annonaceae) that exhibits dual PPARα/γ agonism and an anti-inflammatory effect by inhibiting mononuclear leukocyte adhesion to the dysfunctional endothelium. Herein, we report the synthesis of three new series of prenylated benzopyrans containing one (series 1), two (series 2, "polycerasoidol" analogs) and three (series 3, "trans-δ-tocotrienolic acid" analogs) isoprenoid units in the hydrocarbon side chain at the 2-position of the chroman-6-ol (6hydroxy-dihydrobenzopyran) scaffold. Isoprenoid moieties were introduced through a Grignard reaction sequence, followed by Johnson-Claisen rearrangement and subsequent Wittig olefination. hPPAR transactivation activity and the structure activity relationships (SAR) of eleven novel synthesized 2-prenylated benzopyrans were explored. PPAR transactivation activity demonstrated that the seven-carbon side chain analogs (series 1) displayed selectivity for hPPARα, while the nine-carbon side chain analogs (polycerasoidol analogs, series 2) did so for hPPARγ. The side chain elongation to 11 or 13 carbons (series 3) resulted in weak dual PPARα/γ activation. Therefore, 2-prenylated benzopyrans of sevenand nine-carbon side chain (polycerasoidol analogs) are good lead compounds for developing useful candidates to prevent cardiovascular diseases associated with metabolic disorders.Show less >
Show more >2-Prenylated benzopyrans represent a class of natural and synthetic compounds showing a wide range of significant activities. Polycerasoidol is a natural prenylated benzopyran isolated from the stem bark of Polyalthia cerasoides (Annonaceae) that exhibits dual PPARα/γ agonism and an anti-inflammatory effect by inhibiting mononuclear leukocyte adhesion to the dysfunctional endothelium. Herein, we report the synthesis of three new series of prenylated benzopyrans containing one (series 1), two (series 2, "polycerasoidol" analogs) and three (series 3, "trans-δ-tocotrienolic acid" analogs) isoprenoid units in the hydrocarbon side chain at the 2-position of the chroman-6-ol (6hydroxy-dihydrobenzopyran) scaffold. Isoprenoid moieties were introduced through a Grignard reaction sequence, followed by Johnson-Claisen rearrangement and subsequent Wittig olefination. hPPAR transactivation activity and the structure activity relationships (SAR) of eleven novel synthesized 2-prenylated benzopyrans were explored. PPAR transactivation activity demonstrated that the seven-carbon side chain analogs (series 1) displayed selectivity for hPPARα, while the nine-carbon side chain analogs (polycerasoidol analogs, series 2) did so for hPPARγ. The side chain elongation to 11 or 13 carbons (series 3) resulted in weak dual PPARα/γ activation. Therefore, 2-prenylated benzopyrans of sevenand nine-carbon side chain (polycerasoidol analogs) are good lead compounds for developing useful candidates to prevent cardiovascular diseases associated with metabolic disorders.Show less >
Language :
Anglais
Peer reviewed article :
Oui
Audience :
Internationale
Popular science :
Non
ANR Project :
Source :
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