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Nrf2-interacting nutrients and COVID-19: time for research to develop adaptation strategies

Nrf2-interacting nutrients and COVID-19: time for research to develop adaptation strategies
Nrf2-interacting nutrients and COVID-19: time for research to develop adaptation strategies
There are large between- and within-country variations in COVID-19 death rates. Some very low death rate settings such as Eastern Asia, Central Europe, the Balkans and Africa have a common feature of eating large quantities of fermented foods whose intake is associated with the activation of the Nrf2 (Nuclear factor (erythroid-derived 2)-like 2) anti-oxidant transcription factor. There are many Nrf2-interacting nutrients (berberine, curcumin, epigallocatechin gallate, genistein, quercetin, resveratrol, sulforaphane) that all act similarly to reduce insulin resistance, endothelial damage, lung injury and cytokine storm. They also act on the same mechanisms (mTOR: Mammalian target of rapamycin, PPARγ:Peroxisome proliferator-activated receptor, NFκB: Nuclear factor kappa B, ERK: Extracellular signal-regulated kinases and eIF2α:Elongation initiation factor 2α). They may as a result be important in mitigating the severity of COVID-19, acting through the endoplasmic reticulum stress or ACE-Angiotensin-II-AT1R axis (AT1R) pathway. Many Nrf2-interacting nutrients are also interacting with TRPA1 and/or TRPV1. Interestingly, geographical areas with very low COVID-19 mortality are those with the lowest prevalence of obesity (Sub-Saharan Africa and Asia). It is tempting to propose that Nrf2-interacting foods and nutrients can re-balance insulin resistance and have a significant effect on COVID-19 severity. It is therefore possible that the intake of these foods may restore an optimal natural balance for the Nrf2 pathway and may be of interest in the mitigation of COVID-19 severity.
COVID-19, Foods, Insulin resistance, Nrf2, Nutrients, Obesity, TRPA1
2045-7022
Bousquet, Jean
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Cristol, Jean Paul
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Adcock, Ian
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Al-Ahmad, Mona
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Bassam, Abou Al Zahab
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Alburdan, Hussam
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Aldrey-Palacios, Oscar
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Arshad, Hasan
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Bush, Andrew
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Dimou, Maria
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Djukanovic, Ratko
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Howarth, Peter
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Price, David
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Roberts, Graham
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Thomas, Mike
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Williams, Sian
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Zaidi, Asghar
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the ARIA group
Bousquet, Jean
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Cristol, Jean Paul
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Czarlewski, Wienczyslawa
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Martineau, Adrian
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Haahtela, Tari
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Fonseca, Susana C.
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Iaccarino, Guido
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Fiocchi, Alessandro
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Le Moing, Vincent
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Reynes, Jacques
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Sheikh, Aziz
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Akdis, Cezmi A.
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Abdullah, Baharudin
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Abusada, Nancy
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Adcock, Ian
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Agache, Ioana
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Aggelidis, Xenofon
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Agustin, Jenifer
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Akdis, Cezmi A.
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Akdis, Mübeccel
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Al-Ahmad, Mona
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Bassam, Abou Al Zahab
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Alburdan, Hussam
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Aldrey-Palacios, Oscar
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Cuesta, Emilio Alvarez
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Salman, Hiba Alwan
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Alzaabi, Ashraf
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Arshad, Hasan
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Bush, Andrew
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Dimou, Maria
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Djukanovic, Ratko
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Howarth, Peter
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Price, David
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Thomas, Mike
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Williams, Sian
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Wilson, Nicola
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Zaidi, Asghar
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the ARIA group (2020) Nrf2-interacting nutrients and COVID-19: time for research to develop adaptation strategies. Clinical and Translational Allergy, 10 (1), [58]. (doi:10.1186/s13601-020-00362-7).

Record type: Review

Abstract

There are large between- and within-country variations in COVID-19 death rates. Some very low death rate settings such as Eastern Asia, Central Europe, the Balkans and Africa have a common feature of eating large quantities of fermented foods whose intake is associated with the activation of the Nrf2 (Nuclear factor (erythroid-derived 2)-like 2) anti-oxidant transcription factor. There are many Nrf2-interacting nutrients (berberine, curcumin, epigallocatechin gallate, genistein, quercetin, resveratrol, sulforaphane) that all act similarly to reduce insulin resistance, endothelial damage, lung injury and cytokine storm. They also act on the same mechanisms (mTOR: Mammalian target of rapamycin, PPARγ:Peroxisome proliferator-activated receptor, NFκB: Nuclear factor kappa B, ERK: Extracellular signal-regulated kinases and eIF2α:Elongation initiation factor 2α). They may as a result be important in mitigating the severity of COVID-19, acting through the endoplasmic reticulum stress or ACE-Angiotensin-II-AT1R axis (AT1R) pathway. Many Nrf2-interacting nutrients are also interacting with TRPA1 and/or TRPV1. Interestingly, geographical areas with very low COVID-19 mortality are those with the lowest prevalence of obesity (Sub-Saharan Africa and Asia). It is tempting to propose that Nrf2-interacting foods and nutrients can re-balance insulin resistance and have a significant effect on COVID-19 severity. It is therefore possible that the intake of these foods may restore an optimal natural balance for the Nrf2 pathway and may be of interest in the mitigation of COVID-19 severity.

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s13601-020-00362-7 - Version of Record
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Published date: 3 December 2020
Additional Information: Publisher Copyright: © 2020, The Author(s).
Keywords: COVID-19, Foods, Insulin resistance, Nrf2, Nutrients, Obesity, TRPA1

Identifiers

Local EPrints ID: 508748
URI: http://eprints.soton.ac.uk/id/eprint/508748
ISSN: 2045-7022
PURE UUID: fb06d2a1-c32e-4233-9c52-2a41195097ff
ORCID for Ratko Djukanovic: ORCID iD orcid.org/0000-0001-6039-5612
ORCID for Graham Roberts: ORCID iD orcid.org/0000-0003-2252-1248

Catalogue record

Date deposited: 03 Feb 2026 17:31
Last modified: 04 Feb 2026 02:40

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Contributors

Author: Jean Bousquet
Author: Jean Paul Cristol
Author: Wienczyslawa Czarlewski
Author: Josep M. Anto
Author: Adrian Martineau
Author: Tari Haahtela
Author: Susana C. Fonseca
Author: Guido Iaccarino
Author: Hubert Blain
Author: Alessandro Fiocchi
Author: G. Walter Canonica
Author: Joao A. Fonseca
Author: Alain Vidal
Author: Hak Jong Choi
Author: Hyun Ju Kim
Author: Vincent Le Moing
Author: Jacques Reynes
Author: Aziz Sheikh
Author: Cezmi A. Akdis
Author: Torsten Zuberbier
Author: Amir Hamzah Abdul Latiff
Author: Baharudin Abdullah
Author: Werner Aberer
Author: Nancy Abusada
Author: Ian Adcock
Author: Alejandro Afani
Author: Ioana Agache
Author: Xenofon Aggelidis
Author: Jenifer Agustin
Author: Cezmi A. Akdis
Author: Mübeccel Akdis
Author: Mona Al-Ahmad
Author: Abou Al Zahab Bassam
Author: Hussam Alburdan
Author: Oscar Aldrey-Palacios
Author: Emilio Alvarez Cuesta
Author: Hiba Alwan Salman
Author: Ashraf Alzaabi
Author: Hasan Arshad
Author: Andrew Bush
Author: Maria Dimou
Author: Peter Howarth
Author: David Price
Author: Graham Roberts ORCID iD
Author: Rachel Tan
Author: Mike Thomas
Author: Sian Williams
Author: Nicola Wilson
Author: Asghar Zaidi
Corporate Author: the ARIA group

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