Cargando…
Air pollution exposure induces a decrease in type II interferon response: A paired cohort study
BACKGROUND: While air pollution is a major issue due to its harmful effects on human health, few studies focus on its impact on the immune system and vulnerability to viral infections. The lockdown declared following the COVID-19 pandemic represents a unique opportunity to study the large-scale impa...
Autores principales: | , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Elsevier
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9525814/ https://www.ncbi.nlm.nih.gov/pubmed/36183487 http://dx.doi.org/10.1016/j.ebiom.2022.104291 |
_version_ | 1784800763675934720 |
---|---|
author | Allouche, Jonathan Cremoni, Marion Brglez, Vesna Graça, Daisy Benzaken, Sylvia Zorzi, Kévin Fernandez, Céline Esnault, Vincent Levraut, Michaël Oppo, Sonia Jacquinot, Morgan Armengaud, Alexandre Pradier, Christian Bailly, Laurent Seitz-Polski, Barbara |
author_facet | Allouche, Jonathan Cremoni, Marion Brglez, Vesna Graça, Daisy Benzaken, Sylvia Zorzi, Kévin Fernandez, Céline Esnault, Vincent Levraut, Michaël Oppo, Sonia Jacquinot, Morgan Armengaud, Alexandre Pradier, Christian Bailly, Laurent Seitz-Polski, Barbara |
author_sort | Allouche, Jonathan |
collection | PubMed |
description | BACKGROUND: While air pollution is a major issue due to its harmful effects on human health, few studies focus on its impact on the immune system and vulnerability to viral infections. The lockdown declared following the COVID-19 pandemic represents a unique opportunity to study the large-scale impact of variations in air pollutants in real life. We hypothesized that variations in air pollutants modify Th1 response represented by interferon (IFN) γ production. METHODS: We conducted a single center paired pilot cohort study of 58 participants, and a confirmation cohort of 320 participants in Nice (France), with for each cohort two samplings at six months intervals. We correlated the variations in the production of IFNγ after non-specific stimulation of participants’ immune cells with variations in key regulated pollutants: NO(2), O(3), PM(2.5), and PM(10) and climate variables. Using linear regression, we studied the effects of variations of each pollutant on the immune response. FINDINGS: In the pilot cohort, IFNγ production significantly decreased by 25.7% post-lockdown compared to during lockdown, while NO(2) increased significantly by 46.0%. After the adjustment for climate variations during the study period (sunshine and temperature), we observed a significant effect of NO(2) variation on IFNγ production (P=0.03). In the confirmation cohort IFNγ decreased significantly by 47.8% and after adjustment for environmental factors and intrinsic characteristics we observed a significant effect of environmental factors: NO(2), PM(10), O(3), climatic conditions (sunshine exposure, relative humidity) on variation in IFNγ production (P=0.005, P<0.001, P=0.001, P=0.002 and P<0.001 respectively) but not independently from the BMI at inclusion and the workplace P=0.007 and P<0.001 respectively). INTERPRETATION: We show a weakening of the antiviral cellular response in correlation with an increase of pollutants exposition. FUNDING: Agence Nationale de la Recherche, Conseil Départemental des Alpes-Maritimes and Region Sud. |
format | Online Article Text |
id | pubmed-9525814 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Elsevier |
record_format | MEDLINE/PubMed |
spelling | pubmed-95258142022-10-02 Air pollution exposure induces a decrease in type II interferon response: A paired cohort study Allouche, Jonathan Cremoni, Marion Brglez, Vesna Graça, Daisy Benzaken, Sylvia Zorzi, Kévin Fernandez, Céline Esnault, Vincent Levraut, Michaël Oppo, Sonia Jacquinot, Morgan Armengaud, Alexandre Pradier, Christian Bailly, Laurent Seitz-Polski, Barbara eBioMedicine Articles BACKGROUND: While air pollution is a major issue due to its harmful effects on human health, few studies focus on its impact on the immune system and vulnerability to viral infections. The lockdown declared following the COVID-19 pandemic represents a unique opportunity to study the large-scale impact of variations in air pollutants in real life. We hypothesized that variations in air pollutants modify Th1 response represented by interferon (IFN) γ production. METHODS: We conducted a single center paired pilot cohort study of 58 participants, and a confirmation cohort of 320 participants in Nice (France), with for each cohort two samplings at six months intervals. We correlated the variations in the production of IFNγ after non-specific stimulation of participants’ immune cells with variations in key regulated pollutants: NO(2), O(3), PM(2.5), and PM(10) and climate variables. Using linear regression, we studied the effects of variations of each pollutant on the immune response. FINDINGS: In the pilot cohort, IFNγ production significantly decreased by 25.7% post-lockdown compared to during lockdown, while NO(2) increased significantly by 46.0%. After the adjustment for climate variations during the study period (sunshine and temperature), we observed a significant effect of NO(2) variation on IFNγ production (P=0.03). In the confirmation cohort IFNγ decreased significantly by 47.8% and after adjustment for environmental factors and intrinsic characteristics we observed a significant effect of environmental factors: NO(2), PM(10), O(3), climatic conditions (sunshine exposure, relative humidity) on variation in IFNγ production (P=0.005, P<0.001, P=0.001, P=0.002 and P<0.001 respectively) but not independently from the BMI at inclusion and the workplace P=0.007 and P<0.001 respectively). INTERPRETATION: We show a weakening of the antiviral cellular response in correlation with an increase of pollutants exposition. FUNDING: Agence Nationale de la Recherche, Conseil Départemental des Alpes-Maritimes and Region Sud. Elsevier 2022-09-29 /pmc/articles/PMC9525814/ /pubmed/36183487 http://dx.doi.org/10.1016/j.ebiom.2022.104291 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). |
spellingShingle | Articles Allouche, Jonathan Cremoni, Marion Brglez, Vesna Graça, Daisy Benzaken, Sylvia Zorzi, Kévin Fernandez, Céline Esnault, Vincent Levraut, Michaël Oppo, Sonia Jacquinot, Morgan Armengaud, Alexandre Pradier, Christian Bailly, Laurent Seitz-Polski, Barbara Air pollution exposure induces a decrease in type II interferon response: A paired cohort study |
title | Air pollution exposure induces a decrease in type II interferon response: A paired cohort study |
title_full | Air pollution exposure induces a decrease in type II interferon response: A paired cohort study |
title_fullStr | Air pollution exposure induces a decrease in type II interferon response: A paired cohort study |
title_full_unstemmed | Air pollution exposure induces a decrease in type II interferon response: A paired cohort study |
title_short | Air pollution exposure induces a decrease in type II interferon response: A paired cohort study |
title_sort | air pollution exposure induces a decrease in type ii interferon response: a paired cohort study |
topic | Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9525814/ https://www.ncbi.nlm.nih.gov/pubmed/36183487 http://dx.doi.org/10.1016/j.ebiom.2022.104291 |
work_keys_str_mv | AT allouchejonathan airpollutionexposureinducesadecreaseintypeiiinterferonresponseapairedcohortstudy AT cremonimarion airpollutionexposureinducesadecreaseintypeiiinterferonresponseapairedcohortstudy AT brglezvesna airpollutionexposureinducesadecreaseintypeiiinterferonresponseapairedcohortstudy AT gracadaisy airpollutionexposureinducesadecreaseintypeiiinterferonresponseapairedcohortstudy AT benzakensylvia airpollutionexposureinducesadecreaseintypeiiinterferonresponseapairedcohortstudy AT zorzikevin airpollutionexposureinducesadecreaseintypeiiinterferonresponseapairedcohortstudy AT fernandezceline airpollutionexposureinducesadecreaseintypeiiinterferonresponseapairedcohortstudy AT esnaultvincent airpollutionexposureinducesadecreaseintypeiiinterferonresponseapairedcohortstudy AT levrautmichael airpollutionexposureinducesadecreaseintypeiiinterferonresponseapairedcohortstudy AT opposonia airpollutionexposureinducesadecreaseintypeiiinterferonresponseapairedcohortstudy AT jacquinotmorgan airpollutionexposureinducesadecreaseintypeiiinterferonresponseapairedcohortstudy AT armengaudalexandre airpollutionexposureinducesadecreaseintypeiiinterferonresponseapairedcohortstudy AT pradierchristian airpollutionexposureinducesadecreaseintypeiiinterferonresponseapairedcohortstudy AT baillylaurent airpollutionexposureinducesadecreaseintypeiiinterferonresponseapairedcohortstudy AT seitzpolskibarbara airpollutionexposureinducesadecreaseintypeiiinterferonresponseapairedcohortstudy |