Tracking pan-continental trends in environmental contamination using sentinel raptors—what types of samples should we use?

Biomonitoring using birds of prey as sentinel species has been mooted as a way to evaluate the success of European Union directives that are designed to protect people and the environment across Europe from industrial contaminants and pesticides. No such pan-European evaluation currently exists. Coo...

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Published inEcotoxicology (London) Vol. 25; no. 4; pp. 777 - 801
Main Authors Espín, S, García-Fernández, A. J, Herzke, D, Shore, R. F, van Hattum, B, Martínez-López, E, Coeurdassier, M, Eulaers, I, Fritsch, C, Gómez-Ramírez, P, Jaspers, V. L. B, Krone, O, Duke, G, Helander, B, Mateo, R, Movalli, P, Sonne, C, van den Brink, N. W
Format Journal Article
LanguageEnglish
Published New York Springer US 01.05.2016
Springer
Springer Nature B.V
Springer Verlag
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Abstract Biomonitoring using birds of prey as sentinel species has been mooted as a way to evaluate the success of European Union directives that are designed to protect people and the environment across Europe from industrial contaminants and pesticides. No such pan-European evaluation currently exists. Coordination of such large scale monitoring would require harmonisation across multiple countries of the types of samples collected and analysed-matrices vary in the ease with which they can be collected and the information they provide. We report the first ever pan-European assessment of which raptor samples are collected across Europe and review their suitability for biomonitoring. Currently, some 182 monitoring programmes across 33 European countries collect a variety of raptor samples, and we discuss the relative merits of each for monitoring current priority and emerging compounds. Of the matrices collected, blood and liver are used most extensively for quantifying trends in recent and longer-term contaminant exposure, respectively. These matrices are potentially the most effective for pan-European biomonitoring but are not so widely and frequently collected as others. We found that failed eggs and feathers are the most widely collected samples. Because of this ubiquity, they may provide the best opportunities for widescale biomonitoring, although neither is suitable for all compounds. We advocate piloting pan-European monitoring of selected priority compounds using these matrices and developing read-across approaches to accommodate any effects that trophic pathway and species differences in accumulation may have on our ability to track environmental trends in contaminants.
AbstractList Biomonitoring using birds of prey as sentinel species has been mooted as a way to evaluate the success of European Union directives that are designed to protect people and the environment across Europe from industrial contaminants and pesticides. No such pan-European evaluation currently exists. Coordination of such large scale monitoring would require harmonisation across multiple countries of the types of samples collected and analysed-matrices vary in the ease with which they can be collected and the information they provide. We report the first ever pan-European assessment of which raptor samples are collected across Europe and review their suitability for biomonitoring. Currently, some 182 monitoring programmes across 33 European countries collect a variety of raptor samples, and we discuss the relative merits of each for monitoring current priority and emerging compounds. Of the matrices collected, blood and liver are used most extensively for quantifying trends in recent and longer-term contaminant exposure, respectively. These matrices are potentially the most effective for pan-European biomonitoring but are not so widely and frequently collected as others. We found that failed eggs and feathers are the most widely collected samples. Because of this ubiquity, they may provide the best opportunities for widescale biomonitoring, although neither is suitable for all compounds. We advocate piloting pan-European monitoring of selected priority compounds using these matrices and developing read-across approaches to accommodate any effects that trophic pathway and species differences in accumulation may have on our ability to track environmental trends in contaminants.
Biomonitoring using birds of prey as sentinel species has been mooted as a way to evaluate the success of European Union directives that are designed to protect people and the environment across Europe from industrial contaminants and pesticides. No such pan-European evaluation currently exists. Coordination of such large scale monitoring would require harmonisation across multiple countries of the types of samples collected and analysed-matrices vary in the ease with which they can be collected and the information they provide. We report the first ever pan-European assessment of which raptor samples are collected across Europe and review their suitability for biomonitoring. Currently, some 182 monitoring programmes across 33 European countries collect a variety of raptor samples, and we discuss the relative merits of each for monitoring current priority and emerging compounds. Of the matrices collected, blood and liver are used most extensively for quantifying trends in recent and longer-term contaminant exposure, respectively. These matrices are potentially the most effective for pan-European biomonitoring but are not so widely and frequently collected as others. We found that failed eggs and feathers are the most widely collected samples. Because of this ubiquity, they may provide the best opportunities for widescale biomonitoring, although neither is suitable for all compounds. We advocate piloting pan-European monitoring of selected priority compounds using these matrices and developing read-across approaches to accommodate any effects that trophic pathway and species differences in accumulation may have on our ability to track environmental trends in contaminants.Biomonitoring using birds of prey as sentinel species has been mooted as a way to evaluate the success of European Union directives that are designed to protect people and the environment across Europe from industrial contaminants and pesticides. No such pan-European evaluation currently exists. Coordination of such large scale monitoring would require harmonisation across multiple countries of the types of samples collected and analysed-matrices vary in the ease with which they can be collected and the information they provide. We report the first ever pan-European assessment of which raptor samples are collected across Europe and review their suitability for biomonitoring. Currently, some 182 monitoring programmes across 33 European countries collect a variety of raptor samples, and we discuss the relative merits of each for monitoring current priority and emerging compounds. Of the matrices collected, blood and liver are used most extensively for quantifying trends in recent and longer-term contaminant exposure, respectively. These matrices are potentially the most effective for pan-European biomonitoring but are not so widely and frequently collected as others. We found that failed eggs and feathers are the most widely collected samples. Because of this ubiquity, they may provide the best opportunities for widescale biomonitoring, although neither is suitable for all compounds. We advocate piloting pan-European monitoring of selected priority compounds using these matrices and developing read-across approaches to accommodate any effects that trophic pathway and species differences in accumulation may have on our ability to track environmental trends in contaminants.
Biomonitoring using birds of prey as sentinel species has been mooted as a way to evaluate the success of European Union directives that are designed to protect people and the environment across Europe from industrial contaminants and pesticides. No such pan-European evaluation currently exists. Coordination of such large scale monitoring would require harmonisation across multiple countries of the types of samples collected and analysed-matrices vary in the ease with which they can be collected and the information they provide. We report the first ever pan-European assessment of which raptor samples are collected across Europe and review their suitability for biomonitoring. Currently, some 182 monitoring programmes across 33 European countries collect a variety of raptor samples, and we discuss the relative merits of each for monitoring current priority and emerging compounds. Of the matrices collected, blood and liver are used most extensively for quantifying trends in recent and longer-term contaminant exposure, respectively. These matrices are potentially the most effective for pan-European biomonitoring but are not so widely and frequently collected as others. We found that failed eggs and feathers are the most widely collected samples. Because of this ubiquity, they may provide the best opportunities for widescale biomonitoring, although neither is suitable for all compounds. We advocate piloting pan-European monitoring of selected priority compounds using these matrices and developing read-across approaches to accommodate any effects that trophic pathway and species differences in accumulation may have on our ability to track environmental trends in contaminants.
Biomonitoring using birds of prey as sentinelspecies has been mooted as a way to evaluate the success ofEuropean Union directives that are designed to protectpeople and the environment across Europe from industrialcontaminants and pesticides. No such pan-European evaluation currently exists. Coordination of such large scalemonitoring would require harmonisation across multiplecountries of the types of samples collected and analysedmatrices vary in the ease with which they can be collected and the information they provide. We report the first everpan-European assessment of which raptor samples arecollected across Europe and review their suitability forbiomonitoring. Currently, some 182 monitoring programmes across 33 European countries collect a variety ofraptor samples, and we discuss the relative merits of eachfor monitoring current priority and emerging compounds.Of the matrices collected, blood and liver are used mostextensively for quantifying trends in recent and longerterm contaminant exposure, respectively. These matricesare potentially the most effective for pan-European biomonitoring but are not so widely and frequently collected as others. We found that failed eggs and feathersare the most widely collected samples. Because of thisubiquity, they may provide the best opportunities forwidescale biomonitoring, although neither is suitable for allcompounds. We advocate piloting pan-European monitoring of selected priority compounds using these matricesand developing read-across approaches to accommodateany effects that trophic pathway and species differences inaccumulation may have on our ability to track environmental trends in contaminants.
Audience Academic
Author García-Fernández, A. J
van Hattum, B
Sonne, C
Shore, R. F
Coeurdassier, M
van den Brink, N. W
Espín, S
Duke, G
Martínez-López, E
Helander, B
Herzke, D
Fritsch, C
Jaspers, V. L. B
Eulaers, I
Movalli, P
Krone, O
Gómez-Ramírez, P
Mateo, R
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– sequence: 3
  fullname: Herzke, D
– sequence: 4
  fullname: Shore, R. F
– sequence: 5
  fullname: van Hattum, B
– sequence: 6
  fullname: Martínez-López, E
– sequence: 7
  fullname: Coeurdassier, M
– sequence: 8
  fullname: Eulaers, I
– sequence: 9
  fullname: Fritsch, C
– sequence: 10
  fullname: Gómez-Ramírez, P
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/26944290$$D View this record in MEDLINE/PubMed
https://hal.science/hal-01503853$$DView record in HAL
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COPYRIGHT 2016 Springer
Springer Science+Business Media New York 2016
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Issue 4
Keywords Bird of prey
Matrix
Sample type
Contaminant
Monitoring
Language English
License Distributed under a Creative Commons Attribution 4.0 International License: http://creativecommons.org/licenses/by/4.0
Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
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ORCID 0000-0003-2062-5799
0000-0002-6260-311X
OpenAccessLink https://link.springer.com/10.1007/s10646-016-1636-8
PMID 26944290
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springer_journals_10_1007_s10646_016_1636_8
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ProviderPackageCode CITATION
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PublicationCentury 2000
PublicationDate 2016-05-01
PublicationDateYYYYMMDD 2016-05-01
PublicationDate_xml – month: 05
  year: 2016
  text: 2016-05-01
  day: 01
PublicationDecade 2010
PublicationPlace New York
PublicationPlace_xml – name: New York
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PublicationTitle Ecotoxicology (London)
PublicationTitleAbbrev Ecotoxicology
PublicationTitleAlternate Ecotoxicology
PublicationYear 2016
Publisher Springer US
Springer
Springer Nature B.V
Springer Verlag
Publisher_xml – name: Springer US
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Snippet Biomonitoring using birds of prey as sentinel species has been mooted as a way to evaluate the success of European Union directives that are designed to...
Biomonitoring using birds of prey as sentinelspecies has been mooted as a way to evaluate the success ofEuropean Union directives that are designed to...
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StartPage 777
SubjectTerms Animals
Assessments
Biodiversity and Ecology
Biological monitoring
Biomonitoring
Bird of prey
Birds
birds of prey
blood
Contaminant
Contaminants
Earth and Environmental Science
Ecology
Ecotoxicology
eggs
Environment
Environmental Management
Environmental monitoring
Environmental Monitoring - methods
Environmental Pollutants - metabolism
Environmental Pollution - statistics & numerical data
Environmental Sciences
Europe
European Union
Feathers
indicator species
Industrial pollution
interspecific variation
Life Sciences
liver
Matrix
Monitoring
people
Pesticides
pollution
Priorities
Raptors - metabolism
Sample type
Toxicology
Tracking
Trends
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Title Tracking pan-continental trends in environmental contamination using sentinel raptors—what types of samples should we use?
URI https://link.springer.com/article/10.1007/s10646-016-1636-8
https://www.ncbi.nlm.nih.gov/pubmed/26944290
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Volume 25
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