Please use this identifier to cite or link to this item: http://hdl.handle.net/10174/31880

Title: Higher airborne pollen concentrations correlated with increased SARS-CoV-2 infection rates, as evidenced from 31 countries across the globe
Authors: Damialis, Athanasios
Gilles, Stefanie
Sofiev, Mikhail
Sofieva, Viktoria
Kolek, Franziska
Bayr, Daniela
Plaza, Maria P.
Leier-irtz, Vivien
Kaschuba, Sigrid
Ziska, Lewis H.
Bielory, Leonard
Makra, László
Trigo, Maria del Mar
Antunes, Célia M
Costa, Ana R
Ribeiro, Helena
Traidl-Hoffmann, Claudia
Keywords: SARS-CoV-2
allergy
pollen concentrations
Issue Date: Mar-2021
Publisher: PNAS
Citation: Higher airborne pollen concentrations correlated with increased SARS-CoV-2 infection rates, as evidenced from 31 countries across the globe Athanasios Damialis, Stefanie Gilles, Mikhail Sofiev, Viktoria Sofieva, Franziska Kolek, Daniela Bayr, Maria P. Plaza, Vivien Leier-irtz, Sigrid Kaschuba, Lewis H. Ziska, Leonard Bielory, László Makra, Maria del Mar Trigo, COVID-19/POLLEN study group, Claudia Traidl-Hoffmann. Proceedings of the National Academy of Sciences Mar 2021, 118 (12) e2019034118
Abstract: Pollen exposure weakens the immunity against certain seasonal respiratory viruses by diminishing the antiviral interferon response. Here we investigate whether the same applies to the pandemic severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), which is sensitive to antiviral interferons, if infection waves coincide with high airborne pollen concentrations. Our original hypothesis was that more airborne pollen would lead to increases in infection rates. To examine this, we performed a cross-sectional and longitudinal data analysis on SARS-CoV-2 infection, airborne pollen, and meteorological factors. Our dataset is the most comprehensive, largest possible worldwide from 130 stations, across 31 countries and five continents. To explicitly investigate the effects of social contact, we additionally considered population density of each study area, as well as lockdown effects, in all possible combinations: without any lockdown, with mixed lockdown−no lockdown regime, and under complete lockdown. We found that airborne pollen, sometimes in synergy with humidity and temperature, explained, on average, 44% of the infection rate variability. Infection rates increased after higher pollen concentrations most frequently during the four previous days. Without lockdown, an increase of pollen abundance by 100 pollen/m3 resulted in a 4% average increase of infection rates. Lockdown halved infection rates under similar pollen concentrations. As there can be no preventive measures against airborne pollen exposure, we suggest wide dissemination of pollen−virus coexposure dire effect information to encourage high-risk individuals to wear particle filter masks during high springtime pollen concentrations.
URI: https://www.pnas.org/doi/10.1073/pnas.2019034118?msclkid=25480e59c15211ec94f8921c25b763da#executive-summary-abstract
http://hdl.handle.net/10174/31880
Type: article
Appears in Collections:DCMS - Publicações - Artigos em Revistas Internacionais Com Arbitragem Científica
ICT - Publicações - Artigos em Revistas Internacionais Com Arbitragem Científica

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