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Gaseous Pollutants and Particulate Matter (PM) in Ambient Air and the Number of New Cases of Type 1 Diabetes in Children and Adolescents in the Pomeranian Voivodeship, Poland

The increase in type 1 diabetes mellitus (T1DM) incidence in children is worrying and not yet fully explored. It is suggested that probably air pollution exposure could contribute to the development of T1DM. The aim of the study was to investigate the relationship between the concentration of gaseou...

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Autores principales: Michalska, Małgorzata, Zorena, Katarzyna, Wąż, Piotr, Bartoszewicz, Maria, Brandt-Varma, Agnieszka, Ślęzak, Daniel, Robakowska, Marlena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7036089/
https://www.ncbi.nlm.nih.gov/pubmed/32099842
http://dx.doi.org/10.1155/2020/1648264
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author Michalska, Małgorzata
Zorena, Katarzyna
Wąż, Piotr
Bartoszewicz, Maria
Brandt-Varma, Agnieszka
Ślęzak, Daniel
Robakowska, Marlena
author_facet Michalska, Małgorzata
Zorena, Katarzyna
Wąż, Piotr
Bartoszewicz, Maria
Brandt-Varma, Agnieszka
Ślęzak, Daniel
Robakowska, Marlena
author_sort Michalska, Małgorzata
collection PubMed
description The increase in type 1 diabetes mellitus (T1DM) incidence in children is worrying and not yet fully explored. It is suggested that probably air pollution exposure could contribute to the development of T1DM. The aim of the study was to investigate the relationship between the concentration of gaseous pollutants including, nitrogen dioxide (NO(2)), nitric oxides (NOx), sulphur dioxide (SO(2)), carbon monoxide (CO), and particulate matter (PM) in the air, and the number of new cases of T1DM in children. The number of new cases of T1DM was obtained from the Clinic of Paediatrics, Diabetology, and Endocrinology, Medical University of Gdańsk. The number of children of 0–18 years old in Pomeranian Voivodeship was acquired from the Statistical Yearbook. The concentrations of PM(10) absorbance, NO(2), NOx, SO(2), and CO were measured at 41 measuring posts, between 1 January 2015 and 31 December 2016. It was detected that the average annual concentration of PM(10) was higher than the value acceptable to the WHO. Furthermore, the average 24-hour concentration of PM(10) was 92 μg/m(3) and was higher compared to the acceptable value of 50 μg/m(3) (acc. to EU and WHO). Moreover, the number of new cases of T1DM showed a correlation with the annual average concentration of PM(10) (β = 2.396, p < 0.001), SO(2) (β = 2.294, p < 0.001), and CO (β = 2.452, p < 0.001). High exposure to gaseous pollutants and particulate matter in ambient air may be one of the factors contributing to the risk of developing T1DM in children. Therefore, it is important to take action to decrease air pollutant emissions in Poland. It is crucial to gradually but consistently eliminate the use of solid fuels, such as coal and wood in households, in favour of natural gas and electricity. The development of new technologies to improve air quality, such as “best available techniques” (BAT) or renewable energy sources (water, wind, and solar generation) is of critical importance as well.
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spelling pubmed-70360892020-02-25 Gaseous Pollutants and Particulate Matter (PM) in Ambient Air and the Number of New Cases of Type 1 Diabetes in Children and Adolescents in the Pomeranian Voivodeship, Poland Michalska, Małgorzata Zorena, Katarzyna Wąż, Piotr Bartoszewicz, Maria Brandt-Varma, Agnieszka Ślęzak, Daniel Robakowska, Marlena Biomed Res Int Research Article The increase in type 1 diabetes mellitus (T1DM) incidence in children is worrying and not yet fully explored. It is suggested that probably air pollution exposure could contribute to the development of T1DM. The aim of the study was to investigate the relationship between the concentration of gaseous pollutants including, nitrogen dioxide (NO(2)), nitric oxides (NOx), sulphur dioxide (SO(2)), carbon monoxide (CO), and particulate matter (PM) in the air, and the number of new cases of T1DM in children. The number of new cases of T1DM was obtained from the Clinic of Paediatrics, Diabetology, and Endocrinology, Medical University of Gdańsk. The number of children of 0–18 years old in Pomeranian Voivodeship was acquired from the Statistical Yearbook. The concentrations of PM(10) absorbance, NO(2), NOx, SO(2), and CO were measured at 41 measuring posts, between 1 January 2015 and 31 December 2016. It was detected that the average annual concentration of PM(10) was higher than the value acceptable to the WHO. Furthermore, the average 24-hour concentration of PM(10) was 92 μg/m(3) and was higher compared to the acceptable value of 50 μg/m(3) (acc. to EU and WHO). Moreover, the number of new cases of T1DM showed a correlation with the annual average concentration of PM(10) (β = 2.396, p < 0.001), SO(2) (β = 2.294, p < 0.001), and CO (β = 2.452, p < 0.001). High exposure to gaseous pollutants and particulate matter in ambient air may be one of the factors contributing to the risk of developing T1DM in children. Therefore, it is important to take action to decrease air pollutant emissions in Poland. It is crucial to gradually but consistently eliminate the use of solid fuels, such as coal and wood in households, in favour of natural gas and electricity. The development of new technologies to improve air quality, such as “best available techniques” (BAT) or renewable energy sources (water, wind, and solar generation) is of critical importance as well. Hindawi 2020-02-11 /pmc/articles/PMC7036089/ /pubmed/32099842 http://dx.doi.org/10.1155/2020/1648264 Text en Copyright © 2020 Małgorzata Michalska et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Michalska, Małgorzata
Zorena, Katarzyna
Wąż, Piotr
Bartoszewicz, Maria
Brandt-Varma, Agnieszka
Ślęzak, Daniel
Robakowska, Marlena
Gaseous Pollutants and Particulate Matter (PM) in Ambient Air and the Number of New Cases of Type 1 Diabetes in Children and Adolescents in the Pomeranian Voivodeship, Poland
title Gaseous Pollutants and Particulate Matter (PM) in Ambient Air and the Number of New Cases of Type 1 Diabetes in Children and Adolescents in the Pomeranian Voivodeship, Poland
title_full Gaseous Pollutants and Particulate Matter (PM) in Ambient Air and the Number of New Cases of Type 1 Diabetes in Children and Adolescents in the Pomeranian Voivodeship, Poland
title_fullStr Gaseous Pollutants and Particulate Matter (PM) in Ambient Air and the Number of New Cases of Type 1 Diabetes in Children and Adolescents in the Pomeranian Voivodeship, Poland
title_full_unstemmed Gaseous Pollutants and Particulate Matter (PM) in Ambient Air and the Number of New Cases of Type 1 Diabetes in Children and Adolescents in the Pomeranian Voivodeship, Poland
title_short Gaseous Pollutants and Particulate Matter (PM) in Ambient Air and the Number of New Cases of Type 1 Diabetes in Children and Adolescents in the Pomeranian Voivodeship, Poland
title_sort gaseous pollutants and particulate matter (pm) in ambient air and the number of new cases of type 1 diabetes in children and adolescents in the pomeranian voivodeship, poland
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7036089/
https://www.ncbi.nlm.nih.gov/pubmed/32099842
http://dx.doi.org/10.1155/2020/1648264
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