Repositori institucional URV
Pertenece a la colección PC:SerieArticles
TÍTULO:
Proanthocyanidins in health and disease - imarina:5129464
Handle:
https://hdl.handle.net/20.500.11797/imarina5129464
Autor/es de la URV:
Aragonès Bargalló, Gerard / Arola Arnal, Anna / Arola Ferrer, Luis Maria / BLADÉ SEGARRA, MARIA CINTA / Bravo Vázquez, Francisca Isabel / Muguerza Marquínez, Maria Begoña / Salvadó Rovira, Maria Josepa / Suárez Recio, Manuel
Autor según el artículo:
Bladé C, Aragonès G, Arola-Arnal A, Muguerza B, Bravo FI, Salvadó MJ, Arola L, Suárez M.
Direcció de correo del autor:
manuel.suarez@urv.cat
franciscaisabel.bravo@urv.cat
anna.arola@urv.cat
gerard.aragones@urv.cat
lluis.arola@urv.cat
begona.muguerza@urv.cat
Identificador del autor
:
0000-0003-0122-8253
0000-0002-6468-3088
0000-0001-6529-1345
0000-0003-2767-1974
0000-0001-7384-8588
Año de publicación de la revista:
2016
Tipo de publicación:
Journal Publications
Referencia de l'ítem segons les normes APA
:
Bladé C, Aragonès G, Arola-Arnal A, Muguerza B, Bravo FI, Salvadó MJ, Arola L, Suárez M. (2016). Proanthocyanidins in health and disease. Biofactors, 42(1), 5-12. DOI: 10.1002/biof.1249
Referencia al articulo segun fuente origial
:
Biofactors. 42 (1): 5-12
Resumen:
© 2016 International Union of Biochemistry and Molecular Biology. Proanthocyanidins (PAs) are the most abundant flavonoids in the human diet. Several epidemiological studies connect PA consumption and health benefits and the designation of PAs as healthy compounds started at the early stages of the 20th century. The beneficial health properties of PAs are attributed to their conjugated and colonic metabolites. Therefore, gut microbial compositions can determine the effectiveness of PAs. Reciprocally, dietary polyphenols can act as prebiotics. Recently, it has also been described that PAs modulate the circadian rhythm. Biochemical and epigenetic mechanisms, including the modulation of microRNAs, allow PAs to modulate cell functionality. PA effects in metabolic diseases are also reviewed.
DOI del artículo:
10.1002/biof.1249
Enlace a la fuente original:
https://iubmb.onlinelibrary.wiley.com/doi/10.1002/biof.1249
Versión del articulo depositado:
info:eu-repo/semantics/submittedVersion
Acceso a la licencia de uso:
https://creativecommons.org/licenses/by/3.0/es/
Departamento:
Bioquímica i Biotecnologia
URL Documento de licencia:
https://repositori.urv.cat/ca/proteccio-de-dades/
Áreas temáticas:
Saúde coletiva
Química
Molecular medicine
Medicine (miscellaneous)
Medicina iii
Medicina ii
Medicina i
Farmacia
Enfermagem
Endocrinology & metabolism
Clinical biochemistry
Ciências biológicas iii
Ciências biológicas ii
Ciências biológicas i
Biochemistry & molecular biology
Biochemistry
Palabras clave:
Polyphenols
Molecular mechanisms
Microbiota
Metabolic diseases
Flavonoids
Circadian rhythms
molecular mechanisms
microbiota
metabolic diseases
flavonoids
circadian rhythms
Entidad:
Universitat Rovira i Virgili
Fecha de alta del registro:
2024-09-14
Descripción:
© 2016 International Union of Biochemistry and Molecular Biology. Proanthocyanidins (PAs) are the most abundant flavonoids in the human diet. Several epidemiological studies connect PA consumption and health benefits and the designation of PAs as healthy compounds started at the early stages of the 20th century. The beneficial health properties of PAs are attributed to their conjugated and colonic metabolites. Therefore, gut microbial compositions can determine the effectiveness of PAs. Reciprocally, dietary polyphenols can act as prebiotics. Recently, it has also been described that PAs modulate the circadian rhythm. Biochemical and epigenetic mechanisms, including the modulation of microRNAs, allow PAs to modulate cell functionality. PA effects in metabolic diseases are also reviewed.
Tipo:
Journal Publications
Coautor:
Universitat Rovira i Virgili
Títol:
Proanthocyanidins in health and disease
Materia:
Biochemistry,Biochemistry & Molecular Biology,Clinical Biochemistry,Endocrinology & Metabolism,Medicine (Miscellaneous),Molecular Medicine
Polyphenols
Molecular mechanisms
Microbiota
Metabolic diseases
Flavonoids
Circadian rhythms
molecular mechanisms
microbiota
metabolic diseases
flavonoids
circadian rhythms
Saúde coletiva
Química
Molecular medicine
Medicine (miscellaneous)
Medicina iii
Medicina ii
Medicina i
Farmacia
Enfermagem
Endocrinology & metabolism
Clinical biochemistry
Ciências biológicas iii
Ciências biológicas ii
Ciências biológicas i
Biochemistry & molecular biology
Biochemistry
Fecha:
2016
Autor:
Bladé C, Aragonès G, Arola-Arnal A, Muguerza B, Bravo FI, Salvadó MJ, Arola L, Suárez M.
Derechos:
info:eu-repo/semantics/openAccess
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