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Heavy metal bioaccumulation and metallothionein content in tissues of the sea bream Sparus aurata from three different fish farming systems | Environmental Monitoring and Assessment

<!DOCTYPE html> <html lang="en" class="no-js"> <head> <meta charset="UTF-8"> <meta http-equiv="X-UA-Compatible" content="IE=edge"> <meta name="applicable-device" content="pc,mobile"> <meta name="viewport" content="width=device-width, initial-scale=1"> <meta name="robots" content="max-image-preview:large"> <meta name="access" content="No"> <meta name="360-site-verification" content="1268d79b5e96aecf3ff2a7dac04ad990" /> <title>Heavy metal bioaccumulation and metallothionein content in tissues of the sea bream Sparus aurata from three different fish farming systems | Environmental Monitoring and Assessment</title> <meta name="twitter:site" content="@SpringerLink"/> <meta name="twitter:card" content="summary_large_image"/> <meta name="twitter:image:alt" content="Content cover image"/> <meta name="twitter:title" content="Heavy metal bioaccumulation and metallothionein content in tissues of the sea bream Sparus aurata from three different fish farming systems"/> <meta name="twitter:description" content="Environmental Monitoring and Assessment - The distribution and potential bioaccumulation of dietary and waterborne cadmium and lead in tissues of sea bream (Sparus aurata), a major aquaculture..."/> <meta name="twitter:image" content="https://media.springernature.com/full/springer-static/cover-hires/journal/10661"/> <meta name="journal_id" content="10661"/> <meta name="dc.title" content="Heavy metal bioaccumulation and metallothionein content in tissues of the sea bream Sparus aurata from three different fish farming systems"/> <meta name="dc.source" content="Environmental Monitoring and Assessment 2009 165:1"/> <meta name="dc.format" content="text/html"/> <meta name="dc.publisher" content="Springer"/> <meta name="dc.date" content="2009-05-12"/> <meta name="dc.type" content="OriginalPaper"/> <meta name="dc.language" content="En"/> <meta name="dc.copyright" content="2009 Springer Science+Business Media B.V."/> <meta name="dc.rights" content="2009 Springer Science+Business Media B.V."/> <meta name="dc.rightsAgent" content="journalpermissions@springernature.com"/> <meta name="dc.description" content="The distribution and potential bioaccumulation of dietary and waterborne cadmium and lead in tissues of sea bream (Sparus aurata), a major aquaculture species, was studied in relation to three different fish farming systems. Metallothionein levels in fish tissues were also evaluated. Results demonstrate that metal concentrations in various tissues significantly vary among fish culture systems. Different tissues show different capacity for accumulating heavy metals. The content of both cadmium and lead is not strictly correlated with that of metallothionein. Indeed, the marked accumulation of both metals in liver, as well as the high lead content found in gills and kidney, are not accompanied by a concomitant accumulation of metallothioneins in these tissues. No correlation is present between heavy metals and metallothionein content in muscle tissue. The results also demonstrate that cadmium accumulates mainly via dietary food, whereas lead accumulation is not of food origin. Noteworthy is that the concentration of the two metals found in muscle in all instances is lower than the limits established by European Union legislation for fish destined for human consumption."/> <meta name="prism.issn" content="1573-2959"/> <meta name="prism.publicationName" content="Environmental Monitoring and Assessment"/> <meta name="prism.publicationDate" content="2009-05-12"/> <meta name="prism.volume" content="165"/> <meta name="prism.number" content="1"/> <meta name="prism.section" content="OriginalPaper"/> <meta name="prism.startingPage" content="321"/> <meta name="prism.endingPage" content="329"/> <meta name="prism.copyright" content="2009 Springer Science+Business Media B.V."/> <meta name="prism.rightsAgent" content="journalpermissions@springernature.com"/> <meta name="prism.url" content="https://link.springer.com/article/10.1007/s10661-009-0948-z"/> <meta name="prism.doi" content="doi:10.1007/s10661-009-0948-z"/> <meta name="citation_pdf_url" content="https://link.springer.com/content/pdf/10.1007/s10661-009-0948-z.pdf"/> <meta name="citation_fulltext_html_url" content="https://link.springer.com/article/10.1007/s10661-009-0948-z"/> <meta name="citation_journal_title" content="Environmental Monitoring and Assessment"/> <meta name="citation_journal_abbrev" content="Environ Monit Assess"/> <meta name="citation_publisher" content="Springer Netherlands"/> <meta name="citation_issn" content="1573-2959"/> <meta name="citation_title" content="Heavy metal bioaccumulation and metallothionein content in tissues of the sea bream Sparus aurata from three different fish farming systems"/> <meta name="citation_volume" content="165"/> <meta name="citation_issue" content="1"/> <meta name="citation_publication_date" content="2010/06"/> <meta name="citation_online_date" content="2009/05/12"/> <meta name="citation_firstpage" content="321"/> <meta name="citation_lastpage" content="329"/> <meta name="citation_article_type" content="Article"/> <meta name="citation_language" content="en"/> <meta name="dc.identifier" content="doi:10.1007/s10661-009-0948-z"/> <meta name="DOI" content="10.1007/s10661-009-0948-z"/> <meta name="size" content="138505"/> <meta name="citation_doi" content="10.1007/s10661-009-0948-z"/> <meta name="citation_springer_api_url" content="http://api.springer.com/xmldata/jats?q=doi:10.1007/s10661-009-0948-z&amp;api_key="/> <meta name="description" content="The distribution and potential bioaccumulation of dietary and waterborne cadmium and lead in tissues of sea bream (Sparus aurata), a major aquaculture spec"/> <meta name="dc.creator" content="Cret&#236;, Patrizia"/> <meta name="dc.creator" content="Trinchella, Francesca"/> <meta name="dc.creator" content="Scudiero, Rosaria"/> <meta name="dc.subject" content="Monitoring/Environmental Analysis"/> <meta name="dc.subject" content="Environmental Management"/> <meta name="dc.subject" content="Ecotoxicology"/> <meta name="dc.subject" content="Atmospheric Protection/Air Quality Control/Air Pollution"/> <meta name="dc.subject" content="Ecology"/> <meta name="citation_reference" content="citation_journal_title=Journal of Agricultural and Food Chemistry; 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Metallothionein levels in fish tissues were also evaluated. Results demonstrate that metal concentrations in various tissues significantly vary among fish culture systems. Different tissues show different capacity for accumulating heavy metals. The content of both cadmium and lead is not strictly correlated with that of metallothionein. Indeed, the marked accumulation of both metals in liver, as well as the high lead content found in gills and kidney, are not accompanied by a concomitant accumulation of metallothioneins in these tissues. No correlation is present between heavy metals and metallothionein content in muscle tissue. The results also demonstrate that cadmium accumulates mainly via dietary food, whereas lead accumulation is not of food origin. Noteworthy is that the concentration of the two metals found in muscle in all instances is lower than the limits established by European Union legislation for fish destined for human consumption."/> <meta property="og:image" content="https://media.springernature.com/full/springer-static/cover-hires/journal/10661"/> <meta name="format-detection" content="telephone=no"> <link rel="apple-touch-icon" sizes="180x180" href=/oscar-static/img/favicons/darwin/apple-touch-icon-92e819bf8a.png> <link rel="icon" type="image/png" sizes="192x192" href=/oscar-static/img/favicons/darwin/android-chrome-192x192-6f081ca7e5.png> <link rel="icon" type="image/png" sizes="32x32" href=/oscar-static/img/favicons/darwin/favicon-32x32-1435da3e82.png> <link rel="icon" type="image/png" sizes="16x16" href=/oscar-static/img/favicons/darwin/favicon-16x16-ed57f42bd2.png> <link rel="shortcut icon" data-test="shortcut-icon" href=/oscar-static/img/favicons/darwin/favicon-c6d59aafac.ico> <meta name="theme-color" 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Metallothionein levels in fish tissues were also evaluated. Results demonstrate that metal concentrations in various tissues significantly vary among fish culture systems. Different tissues show different capacity for accumulating heavy metals. The content of both cadmium and lead is not strictly correlated with that of metallothionein. Indeed, the marked accumulation of both metals in liver, as well as the high lead content found in gills and kidney, are not accompanied by a concomitant accumulation of metallothioneins in these tissues. No correlation is present between heavy metals and metallothionein content in muscle tissue. The results also demonstrate that cadmium accumulates mainly via dietary food, whereas lead accumulation is not of food origin. Noteworthy is that the concentration of the two metals found in muscle in all instances is lower than the limits established by European Union legislation for fish destined for human consumption.","datePublished":"2009-05-12T00:00:00Z","dateModified":"2009-05-12T00:00:00Z","pageStart":"321","pageEnd":"329","sameAs":"https://doi.org/10.1007/s10661-009-0948-z","keywords":["Cadmium","Lead","Tissue distribution","Metallothionein","Aquaculture","Sea bream","Monitoring/Environmental Analysis","Environmental Management","Ecotoxicology","Atmospheric Protection/Air Quality Control/Air Pollution","Ecology"],"image":[],"isPartOf":{"name":"Environmental Monitoring and Assessment","issn":["1573-2959","0167-6369"],"volumeNumber":"165","@type":["Periodical","PublicationVolume"]},"publisher":{"name":"Springer Netherlands","logo":{"url":"https://www.springernature.com/app-sn/public/images/logo-springernature.png","@type":"ImageObject"},"@type":"Organization"},"author":[{"name":"Patrizia Cretì","affiliation":[{"name":"University of Salento","address":{"name":"Department of Biological and Environmental Science and Technology, University of Salento, Lecce, Italy","@type":"PostalAddress"},"@type":"Organization"}],"@type":"Person"},{"name":"Francesca Trinchella","affiliation":[{"name":"University of Naples Federico II","address":{"name":"Department of Biological Sciences, University of Naples Federico II, Naples, Italy","@type":"PostalAddress"},"@type":"Organization"}],"@type":"Person"},{"name":"Rosaria Scudiero","affiliation":[{"name":"University of Naples Federico II","address":{"name":"Department of Biological Sciences, University of Naples Federico II, Naples, Italy","@type":"PostalAddress"},"@type":"Organization"}],"email":"rosaria.scudiero@unina.it","@type":"Person"}],"isAccessibleForFree":false,"hasPart":{"isAccessibleForFree":false,"cssSelector":".main-content","@type":"WebPageElement"},"@type":"ScholarlyArticle"},"@context":"https://schema.org","@type":"WebPage"}</script> </head> <body class="" > <!-- Google Tag Manager (noscript) --> <noscript> <iframe src="https://www.googletagmanager.com/ns.html?id=GTM-MRVXSHQ" height="0" width="0" style="display:none;visibility:hidden"></iframe> </noscript> <!-- End Google Tag Manager (noscript) --> <!-- Google Tag Manager (noscript) --> <noscript data-test="gtm-body"> <iframe src="https://www.googletagmanager.com/ns.html?id=GTM-MRVXSHQ" height="0" width="0" style="display:none;visibility:hidden"></iframe> </noscript> <!-- End Google Tag Manager (noscript) --> <div class="u-visually-hidden" aria-hidden="true" data-test="darwin-icons"> <?xml version="1.0" encoding="UTF-8"?><!DOCTYPE svg PUBLIC 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class="app-article-masthead__journal-title">Environmental Monitoring and Assessment</span> </a> <a href="https://link.springer.com/journal/10661/aims-and-scope" class="app-article-masthead__submission-link" data-track="click_aims_and_scope" data-track-action="aims and scope" data-track-context="article page" data-track-label="link"> Aims and scope <svg width="16" height="16" focusable="false" role="img" aria-hidden="true" class="u-icon"><use xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="#icon-eds-i-arrow-right-medium"></use></svg> </a> <a href="https://submission.nature.com/new-submission/10661/3" class="app-article-masthead__submission-link" data-track="click_submit_manuscript" data-track-context="article masthead on springerlink article page" data-track-action="submit manuscript" data-track-label="link"> Submit manuscript <svg width="16" height="16" focusable="false" role="img" aria-hidden="true" class="u-icon"><use xmlns:xlink="http://www.w3.org/1999/xlink" 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data-author-popup="auth-Francesca-Trinchella-Aff2" data-author-search="Trinchella, Francesca">Francesca Trinchella</a><sup class="u-js-hide"><a href="#Aff2">2</a></sup> &amp; </li><li class="c-article-author-list__item"><a data-test="author-name" data-track="click" data-track-action="open author" data-track-label="link" href="#auth-Rosaria-Scudiero-Aff2" data-author-popup="auth-Rosaria-Scudiero-Aff2" data-author-search="Scudiero, Rosaria" data-corresp-id="c1">Rosaria Scudiero<svg width="16" height="16" focusable="false" role="img" aria-hidden="true" class="u-icon"><use xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="#icon-eds-i-mail-medium"></use></svg></a><sup class="u-js-hide"><a href="#Aff2">2</a></sup> </li></ul> <div data-test="article-metrics"> <ul class="app-article-metrics-bar u-list-reset"> <li class="app-article-metrics-bar__item"> <p class="app-article-metrics-bar__count"><svg class="u-icon app-article-metrics-bar__icon" width="24" height="24" aria-hidden="true" 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class="u-mt-32"> </div> </header> </div> <div data-article-body="true" data-track-component="article body" class="c-article-body"> <section aria-labelledby="Abs1" data-title="Abstract" lang="en"><div class="c-article-section" id="Abs1-section"><h2 class="c-article-section__title js-section-title js-c-reading-companion-sections-item" id="Abs1">Abstract</h2><div class="c-article-section__content" id="Abs1-content"><p>The distribution and potential bioaccumulation of dietary and waterborne cadmium and lead in tissues of sea bream (<i>Sparus aurata</i>), a major aquaculture species, was studied in relation to three different fish farming systems. Metallothionein levels in fish tissues were also evaluated. Results demonstrate that metal concentrations in various tissues significantly vary among fish culture systems. Different tissues show different capacity for accumulating heavy metals. The content of both cadmium and lead is not strictly correlated with that of metallothionein. Indeed, the marked accumulation of both metals in liver, as well as the high lead content found in gills and kidney, are not accompanied by a concomitant accumulation of metallothioneins in these tissues. No correlation is present between heavy metals and metallothionein content in muscle tissue. The results also demonstrate that cadmium accumulates mainly via dietary food, whereas lead accumulation is not of food origin. Noteworthy is that the concentration of the two metals found in muscle in all instances is lower than the limits established by European Union legislation for fish destined for human consumption.</p></div></div></section> <div class="c-notes"> <p class="c-notes__text c-status-message--info"> <svg width="24" height="24" focusable="false" role="img" aria-hidden="true" class="c-status-message__icon"> <use xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="#icon-eds-i-info-filled-medium"></use> </svg> This is a preview of subscription content, <a id="test-login-banner-link" href="//wayf.springernature.com?redirect_uri&#x3D;https%3A%2F%2Flink.springer.com%2Farticle%2F10.1007%2Fs10661-009-0948-z%3Ferror%3Dcookies_not_supported%26code%3D02f904d4-93b4-443f-aeed-b6ea53ccf8bd" data-track="click" data-track-action="login" data-track-label="link" class="c-preview-message__link">log in via an institution</a> <svg width="16" height="16" focusable="false" role="img" aria-hidden="true" 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Heavy metal bioaccumulation and metallothionein content in tissues of the sea bream <i>Sparus aurata</i> from three different fish farming systems. <i>Environ Monit Assess</i> <b>165</b>, 321–329 (2010). https://doi.org/10.1007/s10661-009-0948-z</p><p class="c-bibliographic-information__download-citation u-hide-print"><a data-test="citation-link" data-track="click" data-track-action="download article citation" data-track-label="link" data-track-external="" rel="nofollow" href="https://citation-needed.springer.com/v2/references/10.1007/s10661-009-0948-z?format=refman&amp;flavour=citation">Download citation<svg width="16" height="16" focusable="false" role="img" aria-hidden="true" class="u-icon"><use xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="#icon-eds-i-download-medium"></use></svg></a></p><ul class="c-bibliographic-information__list" data-test="publication-history"><li class="c-bibliographic-information__list-item"><p>Received<span class="u-hide">: </span><span 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