Cargando…

Dietary Polyphenols Targeting Arterial Stiffness: Interplay of Contributing Mechanisms and Gut Microbiome-Related Metabolism

Increased arterial stiffness is a degenerative vascular process, progressing with age that leads to a reduced capability of arteries to expand and contract in response to pressure changes. This progressive degeneration mainly affects the extracellular matrix of elastic arteries and causes loss of va...

Descripción completa

Detalles Bibliográficos
Autores principales: De Bruyne, Tess, Steenput, Bieke, Roth, Lynn, De Meyer, Guido R. Y., dos Santos, Claudia Nunes, Valentová, Kateřina, Dambrova, Maija, Hermans, Nina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6471395/
https://www.ncbi.nlm.nih.gov/pubmed/30857217
http://dx.doi.org/10.3390/nu11030578
_version_ 1783412019159891968
author De Bruyne, Tess
Steenput, Bieke
Roth, Lynn
De Meyer, Guido R. Y.
dos Santos, Claudia Nunes
Valentová, Kateřina
Dambrova, Maija
Hermans, Nina
author_facet De Bruyne, Tess
Steenput, Bieke
Roth, Lynn
De Meyer, Guido R. Y.
dos Santos, Claudia Nunes
Valentová, Kateřina
Dambrova, Maija
Hermans, Nina
author_sort De Bruyne, Tess
collection PubMed
description Increased arterial stiffness is a degenerative vascular process, progressing with age that leads to a reduced capability of arteries to expand and contract in response to pressure changes. This progressive degeneration mainly affects the extracellular matrix of elastic arteries and causes loss of vascular elasticity. Recent studies point to significant interference of dietary polyphenols with mechanisms involved in the pathophysiology and progression of arterial stiffness. This review summarizes data from epidemiological and interventional studies on the effect of polyphenols on vascular stiffness as an illustration of current research and addresses possible etiological factors targeted by polyphenols, including pathways of vascular functionality, oxidative status, inflammation, glycation, and autophagy. Effects can either be inflicted directly by the dietary polyphenols or indirectly by metabolites originated from the host or microbial metabolic processes. The composition of the gut microbiome, therefore, determines the resulting metabolome and, as a consequence, the observed activity. On the other hand, polyphenols also influence the intestinal microbial composition, and therefore the metabolites available for interaction with relevant targets. As such, targeting the gut microbiome is another potential treatment option for arterial stiffness.
format Online
Article
Text
id pubmed-6471395
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-64713952019-04-25 Dietary Polyphenols Targeting Arterial Stiffness: Interplay of Contributing Mechanisms and Gut Microbiome-Related Metabolism De Bruyne, Tess Steenput, Bieke Roth, Lynn De Meyer, Guido R. Y. dos Santos, Claudia Nunes Valentová, Kateřina Dambrova, Maija Hermans, Nina Nutrients Review Increased arterial stiffness is a degenerative vascular process, progressing with age that leads to a reduced capability of arteries to expand and contract in response to pressure changes. This progressive degeneration mainly affects the extracellular matrix of elastic arteries and causes loss of vascular elasticity. Recent studies point to significant interference of dietary polyphenols with mechanisms involved in the pathophysiology and progression of arterial stiffness. This review summarizes data from epidemiological and interventional studies on the effect of polyphenols on vascular stiffness as an illustration of current research and addresses possible etiological factors targeted by polyphenols, including pathways of vascular functionality, oxidative status, inflammation, glycation, and autophagy. Effects can either be inflicted directly by the dietary polyphenols or indirectly by metabolites originated from the host or microbial metabolic processes. The composition of the gut microbiome, therefore, determines the resulting metabolome and, as a consequence, the observed activity. On the other hand, polyphenols also influence the intestinal microbial composition, and therefore the metabolites available for interaction with relevant targets. As such, targeting the gut microbiome is another potential treatment option for arterial stiffness. MDPI 2019-03-08 /pmc/articles/PMC6471395/ /pubmed/30857217 http://dx.doi.org/10.3390/nu11030578 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
De Bruyne, Tess
Steenput, Bieke
Roth, Lynn
De Meyer, Guido R. Y.
dos Santos, Claudia Nunes
Valentová, Kateřina
Dambrova, Maija
Hermans, Nina
Dietary Polyphenols Targeting Arterial Stiffness: Interplay of Contributing Mechanisms and Gut Microbiome-Related Metabolism
title Dietary Polyphenols Targeting Arterial Stiffness: Interplay of Contributing Mechanisms and Gut Microbiome-Related Metabolism
title_full Dietary Polyphenols Targeting Arterial Stiffness: Interplay of Contributing Mechanisms and Gut Microbiome-Related Metabolism
title_fullStr Dietary Polyphenols Targeting Arterial Stiffness: Interplay of Contributing Mechanisms and Gut Microbiome-Related Metabolism
title_full_unstemmed Dietary Polyphenols Targeting Arterial Stiffness: Interplay of Contributing Mechanisms and Gut Microbiome-Related Metabolism
title_short Dietary Polyphenols Targeting Arterial Stiffness: Interplay of Contributing Mechanisms and Gut Microbiome-Related Metabolism
title_sort dietary polyphenols targeting arterial stiffness: interplay of contributing mechanisms and gut microbiome-related metabolism
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6471395/
https://www.ncbi.nlm.nih.gov/pubmed/30857217
http://dx.doi.org/10.3390/nu11030578
work_keys_str_mv AT debruynetess dietarypolyphenolstargetingarterialstiffnessinterplayofcontributingmechanismsandgutmicrobiomerelatedmetabolism
AT steenputbieke dietarypolyphenolstargetingarterialstiffnessinterplayofcontributingmechanismsandgutmicrobiomerelatedmetabolism
AT rothlynn dietarypolyphenolstargetingarterialstiffnessinterplayofcontributingmechanismsandgutmicrobiomerelatedmetabolism
AT demeyerguidory dietarypolyphenolstargetingarterialstiffnessinterplayofcontributingmechanismsandgutmicrobiomerelatedmetabolism
AT dossantosclaudianunes dietarypolyphenolstargetingarterialstiffnessinterplayofcontributingmechanismsandgutmicrobiomerelatedmetabolism
AT valentovakaterina dietarypolyphenolstargetingarterialstiffnessinterplayofcontributingmechanismsandgutmicrobiomerelatedmetabolism
AT dambrovamaija dietarypolyphenolstargetingarterialstiffnessinterplayofcontributingmechanismsandgutmicrobiomerelatedmetabolism
AT hermansnina dietarypolyphenolstargetingarterialstiffnessinterplayofcontributingmechanismsandgutmicrobiomerelatedmetabolism