Mercury Levels in Fish for Human Consumption from the Southeast Gulf of California: Tissue Distribution and Health Risk Assessment
We assessed human health risk due to mercury (Hg) concentrations in fish from three coastal lagoons (Urías, Huizache, and Teacapán) in the SE Gulf of California. We also determined Hg distribution in muscle and liver of analyzed ichthyofauna and compared the results among studied areas according to...
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Published in | Archives of environmental contamination and toxicology Vol. 74; no. 2; pp. 273 - 283 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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Springer US
01.02.2018
Springer Nature B.V |
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Abstract | We assessed human health risk due to mercury (Hg) concentrations in fish from three coastal lagoons (Urías, Huizache, and Teacapán) in the SE Gulf of California. We also determined Hg distribution in muscle and liver of analyzed ichthyofauna and compared the results among studied areas according to tissue, season, and lagoon system by using multivariate analyses. Levels of Hg in most of the analyzed fish followed the sequence liver > muscle. The highest Hg levels in muscle (2.80 µg g
−1
dw) and liver (9.51 µg g
−1
dw) were measured in
Cynoscion reticulatus
and
Pomadasys macracanthus
, respectively, although according to the multivariate analyses, statistical differences of Hg concentrations were not found according to the season and the tissue but were found according to the system. It seems that the higher concentrations were associated with areas where the hydrological regime is lower. With respect to health risk assessment, the highest hazard quotients were estimated for
Cynoscion reticulatus
(0.45) and
Stellifer furthii
(0.29) from Urías and
Pomadasys macracanthus
(0.35) from Huizache. None of the studied fish represent a risk for consumers in terms of Hg levels in the edible portion. |
---|---|
AbstractList | We assessed human health risk due to mercury (Hg) concentrations in fish from three coastal lagoons (Urías, Huizache, and Teacapán) in the SE Gulf of California. We also determined Hg distribution in muscle and liver of analyzed ichthyofauna and compared the results among studied areas according to tissue, season, and lagoon system by using multivariate analyses. Levels of Hg in most of the analyzed fish followed the sequence liver > muscle. The highest Hg levels in muscle (2.80 µg g
dw) and liver (9.51 µg g
dw) were measured in Cynoscion reticulatus and Pomadasys macracanthus, respectively, although according to the multivariate analyses, statistical differences of Hg concentrations were not found according to the season and the tissue but were found according to the system. It seems that the higher concentrations were associated with areas where the hydrological regime is lower. With respect to health risk assessment, the highest hazard quotients were estimated for Cynoscion reticulatus (0.45) and Stellifer furthii (0.29) from Urías and Pomadasys macracanthus (0.35) from Huizache. None of the studied fish represent a risk for consumers in terms of Hg levels in the edible portion. We assessed human health risk due to mercury (Hg) concentrations in fish from three coastal lagoons (Urías, Huizache, and Teacapán) in the SE Gulf of California. We also determined Hg distribution in muscle and liver of analyzed ichthyofauna and compared the results among studied areas according to tissue, season, and lagoon system by using multivariate analyses. Levels of Hg in most of the analyzed fish followed the sequence liver > muscle. The highest Hg levels in muscle (2.80 µg g−1 dw) and liver (9.51 µg g−1 dw) were measured in Cynoscion reticulatus and Pomadasys macracanthus, respectively, although according to the multivariate analyses, statistical differences of Hg concentrations were not found according to the season and the tissue but were found according to the system. It seems that the higher concentrations were associated with areas where the hydrological regime is lower. With respect to health risk assessment, the highest hazard quotients were estimated for Cynoscion reticulatus (0.45) and Stellifer furthii (0.29) from Urías and Pomadasys macracanthus (0.35) from Huizache. None of the studied fish represent a risk for consumers in terms of Hg levels in the edible portion. We assessed human health risk due to mercury (Hg) concentrations in fish from three coastal lagoons (Urías, Huizache, and Teacapán) in the SE Gulf of California. We also determined Hg distribution in muscle and liver of analyzed ichthyofauna and compared the results among studied areas according to tissue, season, and lagoon system by using multivariate analyses. Levels of Hg in most of the analyzed fish followed the sequence liver > muscle. The highest Hg levels in muscle (2.80 µg g −1 dw) and liver (9.51 µg g −1 dw) were measured in Cynoscion reticulatus and Pomadasys macracanthus , respectively, although according to the multivariate analyses, statistical differences of Hg concentrations were not found according to the season and the tissue but were found according to the system. It seems that the higher concentrations were associated with areas where the hydrological regime is lower. With respect to health risk assessment, the highest hazard quotients were estimated for Cynoscion reticulatus (0.45) and Stellifer furthii (0.29) from Urías and Pomadasys macracanthus (0.35) from Huizache. None of the studied fish represent a risk for consumers in terms of Hg levels in the edible portion. We assessed human health risk due to mercury (Hg) concentrations in fish from three coastal lagoons (Urías, Huizache, and Teacapán) in the SE Gulf of California. We also determined Hg distribution in muscle and liver of analyzed ichthyofauna and compared the results among studied areas according to tissue, season, and lagoon system by using multivariate analyses. Levels of Hg in most of the analyzed fish followed the sequence liver > muscle. The highest Hg levels in muscle (2.80 µg g-1 dw) and liver (9.51 µg g-1 dw) were measured in Cynoscion reticulatus and Pomadasys macracanthus, respectively, although according to the multivariate analyses, statistical differences of Hg concentrations were not found according to the season and the tissue but were found according to the system. It seems that the higher concentrations were associated with areas where the hydrological regime is lower. With respect to health risk assessment, the highest hazard quotients were estimated for Cynoscion reticulatus (0.45) and Stellifer furthii (0.29) from Urías and Pomadasys macracanthus (0.35) from Huizache. None of the studied fish represent a risk for consumers in terms of Hg levels in the edible portion. |
Author | Ruelas-Inzunza, J. Gil-Manrique, B. Nateras-Ramírez, O. Amezcua, F. Martínez-Salcido, A. I. |
Author_xml | – sequence: 1 givenname: A. I. surname: Martínez-Salcido fullname: Martínez-Salcido, A. I. organization: Posgrado en Ciencias del Mar y Limnología, Universidad Nacional Autónoma de Mexico – sequence: 2 givenname: J. surname: Ruelas-Inzunza fullname: Ruelas-Inzunza, J. email: jrruelasi@itmazatlan.edu.mx organization: Technological Institute of Mazatlán – sequence: 3 givenname: B. surname: Gil-Manrique fullname: Gil-Manrique, B. organization: Posgrado en Ciencias del Mar y Limnología, Universidad Nacional Autónoma de Mexico – sequence: 4 givenname: O. surname: Nateras-Ramírez fullname: Nateras-Ramírez, O. organization: Posgrado en Ciencias del Mar y Limnología, Universidad Nacional Autónoma de Mexico – sequence: 5 givenname: F. surname: Amezcua fullname: Amezcua, F. organization: Instituto de Ciencias del Mar y Limnología, Universidad Nacional Autónoma de Mexico |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/29299656$$D View this record in MEDLINE/PubMed |
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Snippet | We assessed human health risk due to mercury (Hg) concentrations in fish from three coastal lagoons (Urías, Huizache, and Teacapán) in the SE Gulf of... |
SourceID | proquest crossref pubmed springer |
SourceType | Aggregation Database Index Database Publisher |
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SubjectTerms | Animals Bioaccumulation California Cynoscion reticulatus Earth and Environmental Science Ecotoxicology Environment Environmental Chemistry Environmental Health Fish Fish Products - analysis Fishes Food Contamination Health risk assessment Health risks Humans Hydrologic regime Hydrology Lagoons Liver Liver - chemistry Mercury Mercury (metal) Mercury - analysis Mercury - pharmacokinetics Monitoring/Environmental Analysis Muscles Muscles - chemistry Pollution Pomadasys macracanthus Quotients Risk assessment Risk Assessment - methods Seasons Soil Science & Conservation Tissue Distribution Water Pollutants, Chemical - analysis Water Pollutants, Chemical - pharmacokinetics |
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Title | Mercury Levels in Fish for Human Consumption from the Southeast Gulf of California: Tissue Distribution and Health Risk Assessment |
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