PFAS exposure of juvenile loggerhead turtles (Caretta caretta) from the western Mediterranean Sea and its association with oxidative stress.

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Auteurs principaux: Novillo-Sanjuan, Olga, Sait, Shannen Thora Lea, Zhang, Junjie, Gonzalez, Susana V, Raga, Juan Antonio, Aguirre, Jesús Tomás, Asimakopoulos, Alexandros G
Format: Artículo científico
Langue:en
Publié: Environmental pollution (Barking, Essex : 1987) 2026
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author Novillo-Sanjuan, Olga
Sait, Shannen Thora Lea
Zhang, Junjie
Gonzalez, Susana V
Raga, Juan Antonio
Aguirre, Jesús Tomás
Asimakopoulos, Alexandros G
author_facet Novillo-Sanjuan, Olga
Sait, Shannen Thora Lea
Zhang, Junjie
Gonzalez, Susana V
Raga, Juan Antonio
Aguirre, Jesús Tomás
Asimakopoulos, Alexandros G
Novillo-Sanjuan, Olga
Sait, Shannen Thora Lea
Zhang, Junjie
Gonzalez, Susana V
Raga, Juan Antonio
Aguirre, Jesús Tomás
Asimakopoulos, Alexandros G
collection PubMed - marine biology
contents PFAS exposure of juvenile loggerhead turtles (Caretta caretta) from the western Mediterranean Sea and its association with oxidative stress. Novillo-Sanjuan, Olga Sait, Shannen Thora Lea Zhang, Junjie Gonzalez, Susana V Raga, Juan Antonio Aguirre, Jesús Tomás Asimakopoulos, Alexandros G Animals Turtles Oxidative Stress Mediterranean Sea Water Pollutants, Chemical Environmental Monitoring Fluorocarbons Male Female Liver Kidney Biomarkers The concentrations of 36 per- and polyfluoroalkyl substances (PFAS) and two oxidative stress biomarkers, dityrosine (DIY) and 8-Hydroxy-2'-deoxyguanosine (8-OHdG), were determined with UPLC-MS/MS in the liver, kidney, muscle, and fat tissue of loggerhead turtles from the western Mediterranean Sea. 8-OHdG was highly prevalent in the liver, with a detection rate (DR) of 95.5%, demonstrating its potential as a biomarker of oxidative stress, it cannot be linked specifically to PFAS. Dityrosine, however, was not often determined in these marine turtles' tissues (DR = 17%). Short chain PFAS, like 6:2 FTS, PFPeA and NaDoNa were very prevalent (DRs >50%); although PFOS was found in 76.5% of the kidneys and 41.2% of the muscle samples of the turtles studied. Interestingly, ∑PFCAs showed high concentrations both in kidney and in liver (median = 3347.27 ng/g d.w. and 816.84 ng/g d.w., respectively). PFAS with similar chemical structures accumulated in the same organs, potentially indicating similarities in their metabolism. Exposure to these PFAS is expected to be relatively recent, as most turtles in this study were juveniles. Finally, no correlations were observed between PFAS concentrations and sex, size classes or location (provinces), therefore, no patterns in bioaccumulation could be assessed. Our findings suggest that these turtles experience chronic PFAS exposure, with some individuals accumulating high concentrations of certain compounds.
format Artículo científico
id pubmed_41662947
institution PubMed
language en
publishDate 2026
publisher Environmental pollution (Barking, Essex : 1987)
record_format pubmed
spellingShingle PFAS exposure of juvenile loggerhead turtles (Caretta caretta) from the western Mediterranean Sea and its association with oxidative stress.
Novillo-Sanjuan, Olga
Sait, Shannen Thora Lea
Zhang, Junjie
Gonzalez, Susana V
Raga, Juan Antonio
Aguirre, Jesús Tomás
Asimakopoulos, Alexandros G
Animals
Turtles
Oxidative Stress
Mediterranean Sea
Water Pollutants, Chemical
Environmental Monitoring
Fluorocarbons
Male
Female
Liver
Kidney
Biomarkers
PFAS exposure of juvenile loggerhead turtles (Caretta caretta) from the western Mediterranean Sea and its association with oxidative stress. Novillo-Sanjuan, Olga Sait, Shannen Thora Lea Zhang, Junjie Gonzalez, Susana V Raga, Juan Antonio Aguirre, Jesús Tomás Asimakopoulos, Alexandros G Animals Turtles Oxidative Stress Mediterranean Sea Water Pollutants, Chemical Environmental Monitoring Fluorocarbons Male Female Liver Kidney Biomarkers The concentrations of 36 per- and polyfluoroalkyl substances (PFAS) and two oxidative stress biomarkers, dityrosine (DIY) and 8-Hydroxy-2'-deoxyguanosine (8-OHdG), were determined with UPLC-MS/MS in the liver, kidney, muscle, and fat tissue of loggerhead turtles from the western Mediterranean Sea. 8-OHdG was highly prevalent in the liver, with a detection rate (DR) of 95.5%, demonstrating its potential as a biomarker of oxidative stress, it cannot be linked specifically to PFAS. Dityrosine, however, was not often determined in these marine turtles' tissues (DR = 17%). Short chain PFAS, like 6:2 FTS, PFPeA and NaDoNa were very prevalent (DRs >50%); although PFOS was found in 76.5% of the kidneys and 41.2% of the muscle samples of the turtles studied. Interestingly, ∑PFCAs showed high concentrations both in kidney and in liver (median = 3347.27 ng/g d.w. and 816.84 ng/g d.w., respectively). PFAS with similar chemical structures accumulated in the same organs, potentially indicating similarities in their metabolism. Exposure to these PFAS is expected to be relatively recent, as most turtles in this study were juveniles. Finally, no correlations were observed between PFAS concentrations and sex, size classes or location (provinces), therefore, no patterns in bioaccumulation could be assessed. Our findings suggest that these turtles experience chronic PFAS exposure, with some individuals accumulating high concentrations of certain compounds.
title PFAS exposure of juvenile loggerhead turtles (Caretta caretta) from the western Mediterranean Sea and its association with oxidative stress.
topic Animals
Turtles
Oxidative Stress
Mediterranean Sea
Water Pollutants, Chemical
Environmental Monitoring
Fluorocarbons
Male
Female
Liver
Kidney
Biomarkers
url https://pubmed.ncbi.nlm.nih.gov/41662947/