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Main Authors: Vicente, Estela Domingos, Figueiredo, Daniela, Gonçalves, Cátia, Kováts, Nora, Hubai, Katalin, Sainnokhoi, Tsend-Ayush, Vicente, Ana, Oliveira, Helena, Lopes, Isabel, Alves, Célia
Format: Artículo científico
Language:en
Published: Environmental pollution (Barking, Essex : 1987) 2025
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Online Access:https://pubmed.ncbi.nlm.nih.gov/39984019/
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author Vicente, Estela Domingos
Figueiredo, Daniela
Gonçalves, Cátia
Kováts, Nora
Hubai, Katalin
Sainnokhoi, Tsend-Ayush
Vicente, Ana
Oliveira, Helena
Lopes, Isabel
Alves, Célia
author_facet Vicente, Estela Domingos
Figueiredo, Daniela
Gonçalves, Cátia
Kováts, Nora
Hubai, Katalin
Sainnokhoi, Tsend-Ayush
Vicente, Ana
Oliveira, Helena
Lopes, Isabel
Alves, Célia
Vicente, Estela Domingos
Figueiredo, Daniela
Gonçalves, Cátia
Kováts, Nora
Hubai, Katalin
Sainnokhoi, Tsend-Ayush
Vicente, Ana
Oliveira, Helena
Lopes, Isabel
Alves, Célia
collection PubMed - marine biology
contents Toxicological screening of PM from wildfires involving different biomass fuels. Vicente, Estela Domingos Figueiredo, Daniela Gonçalves, Cátia Kováts, Nora Hubai, Katalin Sainnokhoi, Tsend-Ayush Vicente, Ana Oliveira, Helena Lopes, Isabel Alves, Célia Particulate Matter Air Pollutants Biomass Wildfires Humans Portugal Environmental Monitoring Smoke Aliivibrio fischeri Mutagenicity Tests Wildfires are becoming increasingly frequent and severe, particularly in Southern Europe. In addition to their immediate environmental and socioeconomic impacts, wildfires release significant amounts of particulate matter (PM), which poses serious health and ecological risks. Gaseous (CO and CO) and PM samples were collected directly from smoke plumes, and the modified combustion efficiency (MCE) was calculated to characterise combustion conditions. This study aims to assess the cytotoxicity, mutagenicity and ecotoxicity of PM collected during wildfires in Portugal, with a focus on how varying biomass types and combustion conditions impact these effects. Ecotoxicity assessments using Aliivibrio fischeri showed that PM samples ranged from toxic to extremely toxic, with mixed vegetation burns (eucalyptus, acacia, ferns) exhibiting the highest toxicity levels. Cytotoxicity tests on human lung epithelial cells (A549) demonstrated a dose-dependent decrease in metabolic activity and no membrane damage, while mutagenicity assays identified direct-acting mutagens from smouldering acacia debris combustion, specifically inducing frameshift mutations in Salmonella typhimurium strain TA98. Root growth inhibition tests showed no toxicity, with some samples, instead, promoting growth probably due to nutrient content. Peroxidase activity responses indicated that, at higher concentrations, the enzyme function could be reduced if defence mechanisms are overwhelmed or stimulated due to high nutrient levels. These findings highlight the complex and varying toxicological profiles of wildfire PM, emphasising the need for further research.
format Artículo científico
id pubmed_39984019
institution PubMed
language en
publishDate 2025
publisher Environmental pollution (Barking, Essex : 1987)
record_format pubmed
spellingShingle Toxicological screening of PM from wildfires involving different biomass fuels.
Vicente, Estela Domingos
Figueiredo, Daniela
Gonçalves, Cátia
Kováts, Nora
Hubai, Katalin
Sainnokhoi, Tsend-Ayush
Vicente, Ana
Oliveira, Helena
Lopes, Isabel
Alves, Célia
Particulate Matter
Air Pollutants
Biomass
Wildfires
Humans
Portugal
Environmental Monitoring
Smoke
Aliivibrio fischeri
Mutagenicity Tests
Toxicological screening of PM from wildfires involving different biomass fuels. Vicente, Estela Domingos Figueiredo, Daniela Gonçalves, Cátia Kováts, Nora Hubai, Katalin Sainnokhoi, Tsend-Ayush Vicente, Ana Oliveira, Helena Lopes, Isabel Alves, Célia Particulate Matter Air Pollutants Biomass Wildfires Humans Portugal Environmental Monitoring Smoke Aliivibrio fischeri Mutagenicity Tests Wildfires are becoming increasingly frequent and severe, particularly in Southern Europe. In addition to their immediate environmental and socioeconomic impacts, wildfires release significant amounts of particulate matter (PM), which poses serious health and ecological risks. Gaseous (CO and CO) and PM samples were collected directly from smoke plumes, and the modified combustion efficiency (MCE) was calculated to characterise combustion conditions. This study aims to assess the cytotoxicity, mutagenicity and ecotoxicity of PM collected during wildfires in Portugal, with a focus on how varying biomass types and combustion conditions impact these effects. Ecotoxicity assessments using Aliivibrio fischeri showed that PM samples ranged from toxic to extremely toxic, with mixed vegetation burns (eucalyptus, acacia, ferns) exhibiting the highest toxicity levels. Cytotoxicity tests on human lung epithelial cells (A549) demonstrated a dose-dependent decrease in metabolic activity and no membrane damage, while mutagenicity assays identified direct-acting mutagens from smouldering acacia debris combustion, specifically inducing frameshift mutations in Salmonella typhimurium strain TA98. Root growth inhibition tests showed no toxicity, with some samples, instead, promoting growth probably due to nutrient content. Peroxidase activity responses indicated that, at higher concentrations, the enzyme function could be reduced if defence mechanisms are overwhelmed or stimulated due to high nutrient levels. These findings highlight the complex and varying toxicological profiles of wildfire PM, emphasising the need for further research.
title Toxicological screening of PM from wildfires involving different biomass fuels.
topic Particulate Matter
Air Pollutants
Biomass
Wildfires
Humans
Portugal
Environmental Monitoring
Smoke
Aliivibrio fischeri
Mutagenicity Tests
url https://pubmed.ncbi.nlm.nih.gov/39984019/