Literature DB >> 17089704

Analysis of nodularin-R in eider (Somateria mollissima), roach (Rutilus rutilus L.), and flounder (Platichthys flesus L.) liver and muscle samples from the western Gulf of Finland, northern Baltic Sea.

Vesa O Sipiä1, Olli Sjövall, Terhi Valtonen, Deborah L Barnaby, Geoffrey A Codd, James S Metcalf, Mikael Kilpi, Olli Mustonen, Jussi A O Meriluoto.   

Abstract

Nodularin (NODLN) is a cyanobacterial hepatotoxin that may cause toxic effects at very low exposure levels. The NODLN-producing cyanobacterium Nodularia spumigena forms massive blooms in the northern Baltic Sea, especially during the summer. We analyzed liver and muscle (edible meat) samples from common eider (Somateria mollissima), roach (Rutilus rutilus L.), and flounder (Platichthys flesus L.) for NODLN-R by liquid chromatography/mass spectrometry (LC-MS) and enzyme-linked immunosorbent assay (ELISA). Thirty eiders, 11 roach, and 15 flounders were caught from the western Gulf of Finland between September 2002 and October 2004. Eiders from April to June 2003 were found dead. The majority of samples were analyzed by LC-MS and ELISA from the same sample extracts (water:methanol:n-butanol, 75:20:5, v:v:v). Nodularin was detected in 27 eiders, nine roach, and eight flounders. Eider liver samples contained NODLN up to approximately 200 microg/kg dry weight and muscle samples at approximately 20 microg/kg dry weight, roach liver samples 20 to 900 microg NODLN/kg dry weight and muscle samples 2 to 200 microg NODLN/kg dry weight, and flounder liver samples approximately 5 to 1,100 microg NODLN/kg dry weight and muscle samples up to 100 microg NODLN/kg dry weight. The NODLN concentrations found in individual muscle samples of flounders, eiders, and roach (1-200 microg NODLN/kg dry wt) indicate that screening and risk assessment of NODLN in Baltic Sea edible fish and wildlife are required for the protection of consumer's health.

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Year:  2006        PMID: 17089704     DOI: 10.1897/06-185r.1

Source DB:  PubMed          Journal:  Environ Toxicol Chem        ISSN: 0730-7268            Impact factor:   3.742


  4 in total

1.  Transfer of a cyanobacterial neurotoxin within a temperate aquatic ecosystem suggests pathways for human exposure.

Authors:  Sara Jonasson; Johan Eriksson; Lotta Berntzon; Zdenek Spácil; Leopold L Ilag; Lars-Olof Ronnevi; Ulla Rasmussen; Birgitta Bergman
Journal:  Proc Natl Acad Sci U S A       Date:  2010-05-03       Impact factor: 11.205

Review 2.  Cyanotoxins: bioaccumulation and effects on aquatic animals.

Authors:  Aloysio da S Ferrão-Filho; Betina Kozlowsky-Suzuki
Journal:  Mar Drugs       Date:  2011-12-16       Impact factor: 6.085

3.  Nitrogen fixation by cyanobacteria stimulates production in Baltic food webs.

Authors:  Agnes M L Karlson; Jon Duberg; Nisha H Motwani; Hedvig Hogfors; Isabell Klawonn; Helle Ploug; Jennie Barthel Svedén; Andrius Garbaras; Brita Sundelin; Susanna Hajdu; Ulf Larsson; Ragnar Elmgren; Elena Gorokhova
Journal:  Ambio       Date:  2015-06       Impact factor: 5.129

Review 4.  First report of a toxic Nodularia spumigena (Nostocales/ Cyanobacteria) bloom in sub-tropical Australia. II. Bioaccumulation of nodularin in isolated populations of mullet (Mugilidae).

Authors:  Ian Stewart; Geoffrey K Eaglesham; Glenn B McGregor; Roger Chong; Alan A Seawright; Wasantha A Wickramasinghe; Ross Sadler; Lindsay Hunt; Glenn Graham
Journal:  Int J Environ Res Public Health       Date:  2012-07-05       Impact factor: 3.390

  4 in total

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