The Pro-Oxidant Activity of Red Wine Polyphenols Induces an Adaptive Antioxidant Response in Human Erythrocytes

The protective effect of dealcoholized red wine on human health has been partially associated with its polyphenolic components, suggesting that the pool of polyphenols, including flavonoids and anthocyanins, can be responsible for the functional effects of this beverage. We hypothesize a new role of...

Full description

Bibliographic Details
Main Authors: Idolo Tedesco, Carmela Spagnuolo, Gian Luigi Russo, Maria Russo, Carmen Cervellera, Stefania Moccia
Format: Article
Language:English
Published: MDPI AG 2021-05-01
Series:Antioxidants
Subjects:
Online Access:https://www.mdpi.com/2076-3921/10/5/800
id doaj-a0d919f0021242acb5e0c56658823e6a
record_format Article
spelling doaj-a0d919f0021242acb5e0c56658823e6a2021-06-01T00:24:07ZengMDPI AGAntioxidants2076-39212021-05-011080080010.3390/antiox10050800The Pro-Oxidant Activity of Red Wine Polyphenols Induces an Adaptive Antioxidant Response in Human ErythrocytesIdolo Tedesco0Carmela Spagnuolo1Gian Luigi Russo2Maria Russo3Carmen Cervellera4Stefania Moccia5National Research Council, Institute of Food Sciences, 83100 Avellino, ItalyNational Research Council, Institute of Food Sciences, 83100 Avellino, ItalyNational Research Council, Institute of Food Sciences, 83100 Avellino, ItalyNational Research Council, Institute of Food Sciences, 83100 Avellino, ItalyNational Research Council, Institute of Food Sciences, 83100 Avellino, ItalyNational Research Council, Institute of Food Sciences, 83100 Avellino, ItalyThe protective effect of dealcoholized red wine on human health has been partially associated with its polyphenolic components, suggesting that the pool of polyphenols, including flavonoids and anthocyanins, can be responsible for the functional effects of this beverage. We hypothesize a new role of red wine polyphenols (RWp) in modulating the antioxidant potential of erythrocytes, protecting them against oxidative stress. We previously demonstrated that RWp activated the Plasma Membrane Redox System (PMRS), which is involved in neutralizing plasma free radicals. Here, we investigated the underlying mechanism triggered by RWp in the activation of PMRS via the involvement of GSH. Hence, treatment of human erythrocytes with RWp (73 μg/mL Gallic Acid Equivalents) increased GSH intracellular concentration, which depends upon the activation of glutathione reductase (GR) and glucose-6-phosphate dehydrogenase (G6PD), whose enzymatic activities increase of about 30% and 47%, respectively. Changes in the GSH pathway induced by RWp were associated with a slight but significant increase in reactive oxygen species (ROS). We conclude that the pro-oxidant effect of RWp promoted an adaptive stress response in human erythrocytes, which enhances their antioxidant defense.https://www.mdpi.com/2076-3921/10/5/800red wine polyphenolsPMRSerythrocytesantioxidantadaptive response
collection DOAJ
language English
format Article
sources DOAJ
author Idolo Tedesco
Carmela Spagnuolo
Gian Luigi Russo
Maria Russo
Carmen Cervellera
Stefania Moccia
spellingShingle Idolo Tedesco
Carmela Spagnuolo
Gian Luigi Russo
Maria Russo
Carmen Cervellera
Stefania Moccia
The Pro-Oxidant Activity of Red Wine Polyphenols Induces an Adaptive Antioxidant Response in Human Erythrocytes
Antioxidants
red wine polyphenols
PMRS
erythrocytes
antioxidant
adaptive response
author_facet Idolo Tedesco
Carmela Spagnuolo
Gian Luigi Russo
Maria Russo
Carmen Cervellera
Stefania Moccia
author_sort Idolo Tedesco
title The Pro-Oxidant Activity of Red Wine Polyphenols Induces an Adaptive Antioxidant Response in Human Erythrocytes
title_short The Pro-Oxidant Activity of Red Wine Polyphenols Induces an Adaptive Antioxidant Response in Human Erythrocytes
title_full The Pro-Oxidant Activity of Red Wine Polyphenols Induces an Adaptive Antioxidant Response in Human Erythrocytes
title_fullStr The Pro-Oxidant Activity of Red Wine Polyphenols Induces an Adaptive Antioxidant Response in Human Erythrocytes
title_full_unstemmed The Pro-Oxidant Activity of Red Wine Polyphenols Induces an Adaptive Antioxidant Response in Human Erythrocytes
title_sort pro-oxidant activity of red wine polyphenols induces an adaptive antioxidant response in human erythrocytes
publisher MDPI AG
series Antioxidants
issn 2076-3921
publishDate 2021-05-01
description The protective effect of dealcoholized red wine on human health has been partially associated with its polyphenolic components, suggesting that the pool of polyphenols, including flavonoids and anthocyanins, can be responsible for the functional effects of this beverage. We hypothesize a new role of red wine polyphenols (RWp) in modulating the antioxidant potential of erythrocytes, protecting them against oxidative stress. We previously demonstrated that RWp activated the Plasma Membrane Redox System (PMRS), which is involved in neutralizing plasma free radicals. Here, we investigated the underlying mechanism triggered by RWp in the activation of PMRS via the involvement of GSH. Hence, treatment of human erythrocytes with RWp (73 μg/mL Gallic Acid Equivalents) increased GSH intracellular concentration, which depends upon the activation of glutathione reductase (GR) and glucose-6-phosphate dehydrogenase (G6PD), whose enzymatic activities increase of about 30% and 47%, respectively. Changes in the GSH pathway induced by RWp were associated with a slight but significant increase in reactive oxygen species (ROS). We conclude that the pro-oxidant effect of RWp promoted an adaptive stress response in human erythrocytes, which enhances their antioxidant defense.
topic red wine polyphenols
PMRS
erythrocytes
antioxidant
adaptive response
url https://www.mdpi.com/2076-3921/10/5/800
work_keys_str_mv AT idolotedesco theprooxidantactivityofredwinepolyphenolsinducesanadaptiveantioxidantresponseinhumanerythrocytes
AT carmelaspagnuolo theprooxidantactivityofredwinepolyphenolsinducesanadaptiveantioxidantresponseinhumanerythrocytes
AT gianluigirusso theprooxidantactivityofredwinepolyphenolsinducesanadaptiveantioxidantresponseinhumanerythrocytes
AT mariarusso theprooxidantactivityofredwinepolyphenolsinducesanadaptiveantioxidantresponseinhumanerythrocytes
AT carmencervellera theprooxidantactivityofredwinepolyphenolsinducesanadaptiveantioxidantresponseinhumanerythrocytes
AT stefaniamoccia theprooxidantactivityofredwinepolyphenolsinducesanadaptiveantioxidantresponseinhumanerythrocytes
AT idolotedesco prooxidantactivityofredwinepolyphenolsinducesanadaptiveantioxidantresponseinhumanerythrocytes
AT carmelaspagnuolo prooxidantactivityofredwinepolyphenolsinducesanadaptiveantioxidantresponseinhumanerythrocytes
AT gianluigirusso prooxidantactivityofredwinepolyphenolsinducesanadaptiveantioxidantresponseinhumanerythrocytes
AT mariarusso prooxidantactivityofredwinepolyphenolsinducesanadaptiveantioxidantresponseinhumanerythrocytes
AT carmencervellera prooxidantactivityofredwinepolyphenolsinducesanadaptiveantioxidantresponseinhumanerythrocytes
AT stefaniamoccia prooxidantactivityofredwinepolyphenolsinducesanadaptiveantioxidantresponseinhumanerythrocytes
_version_ 1721415007340593152