Register      Login
Environmental Chemistry Environmental Chemistry Society
Environmental problems - Chemical approaches

Articles citing this paper

Trends of polyfluoroalkyl compounds in marine biota and in humans

Renate Sturm A C and Lutz Ahrens B
+ Author Affiliations
- Author Affiliations

A Helmholtz-Zentrum Geesthacht, Centre for Materials and Coastal Research, Institute of Coastal Research, Department for Environmental Chemistry, D-21502 Geesthacht, Germany.

B Environment Canada, 4905 Dufferin Street, Toronto, ON, M3H 5T4, Canada.

C Corresponding author. Email: renate.sturm@hzg.de

Environmental Chemistry 7(6) 457-484 https://doi.org/10.1071/EN10072
Submitted: 6 July 2010  Accepted: 12 October 2010   Published: 21 December 2010



52 articles found in Crossref database.

Temporal trends of polyfluoroalkyl compounds (PFCs) in liver tissue of grey seals (Halichoerus grypus) from the Baltic Sea, 1974–2008
Kratzer Johanna, Ahrens Lutz, Roos Anna, Bäcklin Britt-Marie, Ebinghaus Ralf
Chemosphere. 2011 84(11). p.1592
Correlations between Per‐ and Polyfluoroalkyl Substances and Body Morphometrics in Fledgling Shearwaters Impacted by Plastic Consumption from a Remote Pacific Island
Szabo Drew, Lavers Jennifer L., Shimeta Jeff, Green Mark P., Mulder Raoul A., Clarke Bradley O.
Environmental Toxicology and Chemistry. 2021 40(3). p.799
Per‐ and polyfluoroalkyl substances in Northern California cats: Temporal comparison and a possible link to cat hyperthyroidism
Wang Miaomiao, Guo Weihong, Gardner Steve, Petreas Myrto, Park June‐Soo
Environmental Toxicology and Chemistry. 2018 37(10). p.2523
Temporal Changes in the Levels of Perfluorinated Compounds in California Women's Serum over the Past 50 Years
Wang Miaomiao, Park June-Soo, Petreas Myrto
Environmental Science & Technology. 2011 45(17). p.7510
Perfluorinated alkyl substances in Spanish adults: Geographical distribution and determinants of exposure
Bartolomé Mónica, Gallego-Picó Alejandrina, Cutanda Francisco, Huetos Olga, Esteban Marta, Pérez-Gómez Beatriz, Castaño Argelia
Science of The Total Environment. 2017 603-604 p.352
Bioaccumulation of perfluoroalkyl substances in marine echinoderms: Results of laboratory-scale experiments with Holothuria tubulosa Gmelin, 1791
Martín Julia, Hidalgo Félix, García-Corcoles María Teresa, Ibáñez-Yuste Alejandro José, Alonso Esteban, Vilchez Jose Luís, Zafra-Gómez Alberto
Chemosphere. 2019 215 p.261
Toxicological Effects of Perfluoroalkyl and Polyfluoroalkyl Substances (2015)
Reiner Jessica L., Place Benjamin J.
EI/IOT of PFCs: Environmental impacts/interactions, occurrences, and toxicities of perfluorochemicals
Nganda Armel, Kumar Manish, Uday Vismaya, Srivastava Pankaj, Deka Bhaskar Jyoti, Zitouni Faiza, Mahlknecht Jurgen
Environmental Research. 2023 218 p.114707
Analysis of a Homologous Series of Perfluorocarboxylates from American Red Cross Adult Blood Donors, 2000–2001 and 2006
Olsen Geary W., Ellefson Mark E., Mair David C., Church Timothy R., Goldberg Corinne L., Herron Ross M., Medhdizadehkashi Zahra, Nobiletti John B., Rios Jorge A., Reagen William K., Zobel Larry R.
Environmental Science & Technology. 2011 45(19). p.8022
Perfluorooctanoic acid (PFOA) — main concerns and regulatory developments in Europe from an environmental point of view
Vierke Lena, Staude Claudia, Biegel-Engler Annegret, Drost Wiebke, Schulte Christoph
Environmental Sciences Europe. 2012 24(1).
What is the effect of phasing out long-chain per- and polyfluoroalkyl substances on the concentrations of perfluoroalkyl acids and their precursors in the environment? A systematic review protocol
Land Magnus, de Wit Cynthia A, Cousins Ian T, Herzke Dorte, Johansson Jana, Martin Jonathan W
Environmental Evidence. 2015 4(1).
A New Fluorinated Surfactant Contaminant in Biota: Perfluorobutane Sulfonamide in Several Fish Species
Chu Shaogang, Letcher Robert J., McGoldrick Daryl J., Backus Sean M.
Environmental Science & Technology. 2016 50(2). p.669
Application of a novel prioritisation strategy using non-target screening for evaluation of temporal trends (1969–2017) of contaminants of emerging concern (CECs) in archived lynx muscle tissue samples
Dürig Wiebke, Alygizakis Nikiforos A., Wiberg Karin, Ahrens Lutz
Science of The Total Environment. 2022 817 p.153035
The structure of the fire fighting foam surfactant Forafac®1157 and its biological and photolytic transformation products
Moe Morten K., Huber Sandra, Svenson Johan, Hagenaars An, Pabon Martial, Trümper Monika, Berger Urs, Knapen Dries, Herzke Dorte
Chemosphere. 2012 89(7). p.869
Towards attaining SDG 6: The opportunities available for capacitive deionization technology to provide clean water to the African population
Sufiani Omari, Sahini Mtabazi G., Elisadiki Joyce
Environmental Research. 2023 216 p.114671
Human Exposure to Perfluorinated Compounds in Catalonia, Spain: Contribution of Drinking Water and Fish and Shellfish
Domingo José L., Ericson-Jogsten Ingrid, Perelló Gemma, Nadal Martí, Van Bavel Bert, Kärrman Anna
Journal of Agricultural and Food Chemistry. 2012 60(17). p.4408
Perfluorooctane sulfonate in water and sediment from the Yangtze Estuary and coastal waters: Occurrence, partitioning and diffusion behavior and risk assessment
Chen Jing, Huang Hong, Li Ruijing, Yu Jinchen, Hu Zhiming, Zhao Xu, Li Yang, Wang Wenqian
Emerging Contaminants. 2023 9(4). p.100260
Temporal Shifts in Poly- and Perfluoroalkyl Substances (PFASs) in North Atlantic Pilot Whales Indicate Large Contribution of Atmospheric Precursors
Dassuncao Clifton, Hu Xindi C., Zhang Xianming, Bossi Rossana, Dam Maria, Mikkelsen Bjarni, Sunderland Elsie M.
Environmental Science & Technology. 2017 51(8). p.4512
Investigating the Atmospheric Sources and Sinks of Perfluorooctanoic Acid Using a Global Chemistry Transport Model
Holland Rayne, Khan M. Anwar H., Chhantyal-Pun Rabi, Orr-Ewing Andrew J., Percival Carl J., Taatjes Craig A., Shallcross Dudley E.
Atmosphere. 2020 11(4). p.407
Perfluoroalkyl substances (PFASs) in the marine environment: Spatial distribution and temporal profile shifts in shellfish from French coasts
Catherine Munschy, Nadège Bely, Charles Pollono, Yann Aminot
Chemosphere. 2019 228 p.640
Perfluoroalkyl Acids (PFAAs) Concentrations and Oxidative Status in Two Generations of Great Tits Inhabiting a Contamination Hotspot
Lopez-Antia Ana, Groffen Thimo, Lasters Robin, AbdElgawad Hamada, Sun Jiachen, Asard Han, Bervoets Lieven, Eens Marcel
Environmental Science & Technology. 2019 53(3). p.1617
Trends, analytical methods and precision in the determination of perfluoroalkyl acids in human milk
Kärrman A., Lindström G.
TrAC Trends in Analytical Chemistry. 2013 46 p.118
Environmental Forensics for Persistent Organic Pollutants (2014)
Wenning Richard J., Martello Linda
Ombrotrophic Peat Bogs Are Not Suited as Natural Archives To Investigate the Historical Atmospheric Deposition of Perfluoroalkyl Substances
Dreyer Annekatrin, Thuens Sabine, Kirchgeorg Torben, Radke Michael
Environmental Science & Technology. 2012 46(14). p.7512
Perfluoroalkyl acids and sulfonamides and dietary, biological and ecological associations in peregrine falcons from the Laurentian Great Lakes Basin, Canada
Sun Jiachen, Letcher Robert J., Eens Marcel, Covaci Adrian, Fernie Kim J.
Environmental Research. 2020 191 p.110151
Endocrine Disrupting Chemicals-induced Metabolic Disorders and Treatment Strategies (2021)
Niazi Samia Gul, Javed Chanda, Shah Adeel, Ain Qurat UL, Tahir Imtiaz Mahmood
Biotransformation pathways of fluorotelomer‐based polyfluoroalkyl substances: A review
Butt Craig M., Muir Derek C.G., Mabury Scott A.
Environmental Toxicology and Chemistry. 2014 33(2). p.243
Are Feathers of a Songbird Model Species (The Great Tit, Parus major) Suitable for Monitoring Perfluoroalkyl Acids (PFAAs) in Blood Plasma?
Groffen Thimo, Lasters Robin, Bervoets Lieven, Prinsen Els, Eens Marcel
Environmental Science & Technology. 2020 54(15). p.9334
Retrospective monitoring of perfluorocarboxylates and perfluorosulfonates in human plasma archived by the German Environmental Specimen Bank
Schröter-Kermani Christa, Müller Josef, Jürling Heinrich, Conrad André, Schulte Christoph
International Journal of Hygiene and Environmental Health. 2013 216(6). p.633
Size and age–concentration relationships for perfluoroalkyl substances in stingray livers from eastern Australia
Baduel Christine, Lai Foon Yin, Townsend Kathy, Mueller Jochen F.
Science of The Total Environment. 2014 496 p.523
Reprint of: Temporal trends of polyfluoroalkyl compounds (PFCs) in liver tissue of grey seals (Halichoerus grypus) from the Baltic Sea, 1974–2008
Kratzer Johanna, Ahrens Lutz, Roos Anna, Bäcklin Britt-Marie, Ebinghaus Ralf
Chemosphere. 2011 85(2). p.253
Feasibility of using the National Marine Mammal Tissue Bank for retrospective exploratory studies of perfluorinated alkyl acids
Lynch Jennifer M., Ragland Jared M., Reagen William K., Wolf Susan T., Malinsky Michelle D., Ellisor Michael B., Moors Amanda J., Pugh Rebecca S., Reiner Jessica L.
Science of The Total Environment. 2018 624 p.781
Perfluorinated Alkyl Acids in Blood Serum from Primiparous Women in Sweden: Serial Sampling during Pregnancy and Nursing, And Temporal Trends 1996–2010
Glynn Anders, Berger Urs, Bignert Anders, Ullah Shahid, Aune Marie, Lignell Sanna, Darnerud Per Ola
Environmental Science & Technology. 2012 46(16). p.9071
Perfluoroalkyl and polyfluoroalkyl substances in the environment: Terminology, classification, and origins
Buck Robert C, Franklin James, Berger Urs, Conder Jason M, Cousins Ian T, de Voogt Pim, Jensen Allan Astrup, Kannan Kurunthachalam, Mabury Scott A, van Leeuwen Stefan PJ
Integrated Environmental Assessment and Management. 2011 7(4). p.513
Survey of legacy and emerging per- and polyfluorinated alkyl substances in Mediterranean seafood from a North African ecosystem
Barhoumi Badreddine, Sander Sylvia G., Driss Mohamed Ridha, Tolosa Imma
Environmental Pollution. 2022 292 p.118398
PFOS affects posterior swim bladder chamber inflation and swimming performance of zebrafish larvae
Hagenaars A., Stinckens E., Vergauwen L., Bervoets L., Knapen D.
Aquatic Toxicology. 2014 157 p.225
Effects of Persistent and Bioactive Organic Pollutants on Human Health (2013)
Nadal Martí, Domingo José L.
What is the effect of phasing out long-chain per- and polyfluoroalkyl substances on the concentrations of perfluoroalkyl acids and their precursors in the environment? A systematic review
Land Magnus, de Wit Cynthia A., Bignert Anders, Cousins Ian T., Herzke Dorte, Johansson Jana H., Martin Jonathan W.
Environmental Evidence. 2018 7(1).
Single PFAS and PFAS mixtures affect nuclear receptor- and oxidative stress-related pathways in precision-cut liver slices of Atlantic cod (Gadus morhua)
Dale Karina, Yadetie Fekadu, Horvli Torill, Zhang Xiaokang, Frøysa Håvard Guldbrandsen, Karlsen Odd André, Goksøyr Anders
Science of The Total Environment. 2022 814 p.152732
Legacy and emerging organic contaminants in two sympatric shark species from Reunion Island (Southwest Indian Ocean): Levels, profiles and maternal transfer
Chynel M., Munschy C., Bely N., Héas-Moisan K., Pollono C., Jaquemet S.
Science of The Total Environment. 2021 751 p.141807
Perfluorinated Sulfonate and Carboxylate Compounds in Eggs of Seabirds Breeding in the Canadian Arctic: Temporal Trends (1975–2011) and Interspecies Comparison
Braune Birgit M., Letcher Robert J.
Environmental Science & Technology. 2013 47(1). p.616
Fate and effects of poly‐ and perfluoroalkyl substances in the aquatic environment: A review
Ahrens Lutz, Bundschuh Mirco
Environmental Toxicology and Chemistry. 2014 33(9). p.1921
Cell cycle alterations due to perfluoroalkyl substances PFOS, PFOA, PFBS, PFBA and the new PFAS C6O4 on bottlenose dolphin (Tursiops truncatus) skin cell
Otero-Sabio Cristina, Giacomello Marta, Centelleghe Cinzia, Caicci Federico, Bonato Marco, Venerando Andrea, Graïc Jean-Marie, Mazzariol Sandro, Finos Livio, Corain Livio, Peruffo Antonella
Ecotoxicology and Environmental Safety. 2022 244 p.113980
Perfluoroalkyl substances in a firefighting training ground (FTG), distribution and potential future release
Baduel Christine, Paxman Christopher J., Mueller Jochen F.
Journal of Hazardous Materials. 2015 296 p.46
Temporal variations of perfluoroalkyl substances and polybrominated diphenyl ethers in alpine snow
Kirchgeorg Torben, Dreyer Annekatrin, Gabrieli Jacopo, Kehrwald Natalie, Sigl Michael, Schwikowski Margit, Boutron Claude, Gambaro Andrea, Barbante Carlo, Ebinghaus Ralf
Environmental Pollution. 2013 178 p.367
Trends of perfluorochemicals in Greenland ringed seals and polar bears: Indications of shifts to decreasing trends
Rigét Frank, Bossi Rossana, Sonne Christian, Vorkamp Katrin, Dietz Rune
Chemosphere. 2013 93(8). p.1607
Research Trends in Emerging Contaminants on the Aquatic Environments of Tanzania
Miraji H., Othman O. C., Ngassapa F. N., Mureithi E. W.
Scientifica. 2016 2016 p.1
Emerging and Eco-Friendly Approaches for Waste Management (2019)
Hossein Miraji
Emerging contaminants of public health significance as water quality indicator compounds in the urban water cycle
Pal Amrita, He Yiliang, Jekel Martin, Reinhard Martin, Gin Karina Yew-Hoong
Environment International. 2014 71 p.46
Detection of fluorotelomer alcohols in indoor environments and their relevance for human exposure
Schlummer Martin, Gruber Ludwig, Fiedler Dominik, Kizlauskas Markus, Müller Josef
Environment International. 2013 57-58 p.42
Marine Mammal Ecotoxicology (2018)
Fair Patricia A., Houde Magali
Degradation of hexafluoropropylene oxide oligomer acids as PFOA alternatives in simulated nanofiltration concentrate: Effect of molecular structure
Bao Yixiang, Cagnetta Giovanni, Huang Jun, Yu Gang
Chemical Engineering Journal. 2020 382 p.122866

Committee on Publication Ethics

Abstract Full Text PDF (570 KB) Export Citation Get Permission

Share

Share on Facebook Share on Twitter Share on LinkedIn Share via Email