Literature DB >> 24652572

Chronic dietary exposure to pyrolytic and petrogenic mixtures of PAHs causes physiological disruption in zebrafish--part I: Survival and growth.

Caroline Vignet1, Karyn Le Menach, David Mazurais, Julie Lucas, Prescilla Perrichon, Florane Le Bihanic, Marie-Hélène Devier, Laura Lyphout, Laura Frère, Marie-Laure Bégout, José-Luis Zambonino-Infante, Hélène Budzinski, Xavier Cousin.   

Abstract

The release of polycyclic aromatic hydrocarbons (PAHs) into the environment has increased very substantially over the last decades leading to high concentrations in sediments of contaminated areas. To evaluate the consequences of long-term chronic exposure to PAHs, zebrafish were exposed, from their first meal at 5 days post fertilisation until they became reproducing adults, to diets spiked with three PAH fractions at three environmentally relevant concentrations with the medium concentration being in the range of 4.6-6.7 μg g(-1) for total quantified PAHs including the 16 US-EPA indicator PAHs and alkylated derivatives. The fractions used were representative of PAHs of pyrolytic (PY) origin or of two different oils of differing compositions, a heavy fuel (HO) and a light crude oil (LO). Fish growth was inhibited by all PAH fractions and the effects were sex specific: as determined with 9-month-old adults, exposure to the highest PY inhibited growth of females; exposure to the highest HO and LO inhibited growth of males; also, the highest HO dramatically reduced survival. Morphological analysis indicated a disruption of jaw growth in larvae and malformations in adults. Intestinal and pancreatic enzyme activities were abnormal in 2-month-old exposed fish. These effects may contribute to poor growth. Finally, our results indicate that PAH mixtures of different compositions, representative of situations encountered in the wild, can promote lethal and sublethal effects which are likely to be detrimental for fish recruitment.

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Year:  2014        PMID: 24652572     DOI: 10.1007/s11356-014-2629-x

Source DB:  PubMed          Journal:  Environ Sci Pollut Res Int        ISSN: 0944-1344            Impact factor:   4.223


  51 in total

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Journal:  Aquat Toxicol       Date:  2011-10-18       Impact factor: 4.964

2.  Polycyclic aromatic hydrocarbon 13C/12C ratio measurement in petroleum and marine sediments application to standard reference materials and a sediment suspected of contamination from the Erika oil spill.

Authors:  L Mazeas; H Budzinski
Journal:  J Chromatogr A       Date:  2001-07-20       Impact factor: 4.759

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Journal:  Aquat Toxicol       Date:  2011-06-28       Impact factor: 4.964

4.  In situ experimental assessment of lake whitefish development following a freshwater oil spill.

Authors:  Adrian M H Debruyn; Barbara G Wernick; Corey Stefura; Blair G McDonald; Barri-Lynn Rudolph; Luanne Patterson; Peter M Chapman
Journal:  Environ Sci Technol       Date:  2007-10-15       Impact factor: 9.028

5.  Defects in cardiac function precede morphological abnormalities in fish embryos exposed to polycyclic aromatic hydrocarbons.

Authors:  John P Incardona; Tracy K Collier; Nathaniel L Scholz
Journal:  Toxicol Appl Pharmacol       Date:  2004-04-15       Impact factor: 4.219

6.  Evaluation of biomarkers of exposure and effect in juvenile areolated grouper (Epinephelus areolatus) on foodborne exposure to benzo[a]pyrene.

Authors:  Rudolf S S Wu; Carmel A Pollino; Doris W T Au; Gene J Zheng; Bonnie B H Yuen; Paul K S Lam
Journal:  Environ Toxicol Chem       Date:  2003-07       Impact factor: 3.742

7.  Biliary PAH metabolites, EROD activity and DNA damage in dab (Limanda limanda) from Seine Estuary (France).

Authors:  Marie-Hélène Dévier; Marie Le Dû-Lacoste; Farida Akcha; Bénédicte Morin; Laurent Peluhet; Karyn Le Menach; Thierry Burgeot; Hélène Budzinski
Journal:  Environ Sci Pollut Res Int       Date:  2012-12-04       Impact factor: 4.223

8.  Soil ecotoxicity of polycyclic aromatic hydrocarbons in relation to soil sorption, lipophilicity, and water solubility.

Authors:  Line E Sverdrup; Torben Nielsen; Paul Henning Krogh
Journal:  Environ Sci Technol       Date:  2002-06-01       Impact factor: 9.028

9.  Aryl hydrocarbon receptor-mediated effects of chlorinated polycyclic aromatic hydrocarbons.

Authors:  Takeshi Ohura; Maki Morita; Masakazu Makino; Takashi Amagai; Kayoko Shimoi
Journal:  Chem Res Toxicol       Date:  2007-08-21       Impact factor: 3.739

10.  Long term monitoring for oil in the Exxon Valdez spill region.

Authors:  James R Payne; William B Driskell; Jeffrey W Short; Marie L Larsen
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  9 in total

1.  Long-term disruption of growth, reproduction, and behavior after embryonic exposure of zebrafish to PAH-spiked sediment.

Authors:  Caroline Vignet; Marie-Hélène Devier; Karyn Le Menach; Laura Lyphout; Jérémy Potier; Jérôme Cachot; Hélène Budzinski; Marie-Laure Bégout; Xavier Cousin
Journal:  Environ Sci Pollut Res Int       Date:  2014-03-23       Impact factor: 4.223

2.  Exposures of zebrafish through diet to three environmentally relevant mixtures of PAHs produce behavioral disruptions in unexposed F1 and F2 descendant.

Authors:  Caroline Vignet; Lucette Joassard; Laura Lyphout; Tiphaine Guionnet; Manon Goubeau; Karyn Le Menach; François Brion; Olivier Kah; Bon-Chu Chung; Hélène Budzinski; Marie-Laure Bégout; Xavier Cousin
Journal:  Environ Sci Pollut Res Int       Date:  2015-02-03       Impact factor: 4.223

3.  PAHs and fish--exposure monitoring and adverse effects--from molecular to individual level.

Authors:  Xavier Cousin; Jérôme Cachot
Journal:  Environ Sci Pollut Res Int       Date:  2014-07-02       Impact factor: 4.223

4.  Chronic dietary exposure to pyrolytic and petrogenic mixtures of PAHs causes physiological disruption in zebrafish--part II: behavior.

Authors:  Caroline Vignet; Karyn Le Menach; Laura Lyphout; Tiphaine Guionnet; Laura Frère; Didier Leguay; Hélène Budzinski; Xavier Cousin; Marie-Laure Bégout
Journal:  Environ Sci Pollut Res Int       Date:  2014-03-27       Impact factor: 4.223

5.  Pyrolytic Remediation and Ecotoxicity Assessment of Fuel-Oil-Contaminated Soil.

Authors:  Byeongwook Choi; Jin-Seo Yu; Gu-Young Kang; Tae-Yong Jeong; Eun Hea Jho; Sung-Jong Lee
Journal:  Toxics       Date:  2022-05-12

6.  Chronic dietary exposure of zebrafish to PAH mixtures results in carcinogenic but not genotoxic effects.

Authors:  T Larcher; P Perrichon; C Vignet; M Ledevin; K Le Menach; L Lyphout; L Landi; C Clerandeau; F Lebihanic; D Ménard; T Burgeot; H Budzinski; F Akcha; J Cachot; X Cousin
Journal:  Environ Sci Pollut Res Int       Date:  2014-04-30       Impact factor: 4.223

7.  Aerobic metabolism and cardiac activity in the descendants of zebrafish exposed to pyrolytic polycyclic aromatic hydrocarbons.

Authors:  Julie Lucas; Prescilla Perrichon; Marine Nouhaud; Alexandre Audras; Isabelle Leguen; Christel Lefrancois
Journal:  Environ Sci Pollut Res Int       Date:  2014-07-05       Impact factor: 4.223

8.  Changes in Brain Monoamines Underlie Behavioural Disruptions after Zebrafish Diet Exposure to Polycyclic Aromatic Hydrocarbons Environmental Mixtures.

Authors:  Caroline Vignet; Verena M Trenkel; Annick Vouillarmet; Giampiero Bricca; Marie-Laure Bégout; Xavier Cousin
Journal:  Int J Mol Sci       Date:  2017-03-04       Impact factor: 5.923

9.  Fish Reproduction Is Disrupted upon Lifelong Exposure to Environmental PAHs Fractions Revealing Different Modes of Action.

Authors:  Caroline Vignet; Thibaut Larcher; Blandine Davail; Lucette Joassard; Karyn Le Menach; Tiphaine Guionnet; Laura Lyphout; Mireille Ledevin; Manon Goubeau; Hélène Budzinski; Marie-Laure Bégout; Xavier Cousin
Journal:  Toxics       Date:  2016-10-28
  9 in total

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