Literature DB >> 17662954

Extraction and analysis of lipophilic brevetoxins from the red tide dinoflagellate Karenia brevis.

Michael J Twiner1, Marie-Yasmine Bottein Dechraoui, Zhihong Wang, Christina M Mikulski, Michael S Henry, Richard H Pierce, Gregory J Doucette.   

Abstract

Efficient extraction and accurate analysis of lipophilic brevetoxins (PbTxs), produced by the harmful algal bloom (HAB) species Karenia brevis, are essential when assessing the toxicological potential of this dinoflagellate. One of the most commonly used brevetoxin extraction methodologies employs C18 solid-phase extraction (SPE). In this study, C18 SPEC discs were tested for extraction of spiked PbTx-3 in seawater and naturally produced brevetoxins from K. brevis. Quantification of brevetoxin in the extracts was determined using four independent methods: receptor binding assay (RBA), radioimmunoassay (RIA), neuroblastoma (N2A) cytotoxicity assay, and liquid chromatography/mass spectrometry (LC/MS). In addition to quantification of the brevetoxin concentration, LC/MS analysis provided identification of individual congeners and each of their hydrolyzed products. SPEC disc extractions prepared from sonicated cultures of non-brevetoxin-producing Karenia mikimotoi cultures spiked with PbTx-3 yielded extraction efficiencies of 108, 99, and 125% as determined by the RBA, RIA, and N2A cytotoxicity assay, respectively. In SPEC disc extracts of brevetoxin-producing K. brevis (isolate SP3) cultures, LC/MS analysis yielded the highest total concentrations, possibly due to the concurrent detection of hydrolytic brevetoxin congeners that accounted for up to 20% of the congener profile. Relative to the brevetoxin concentration as determined by LC/MS, the RBA, RIA, and N2A cytotoxicity assay detected 73, 83, and 51% of the total brevetoxin concentration. Stability experiments demonstrated that brevetoxins remain stable on the SPEC discs for at least 30 days, making this extraction method suitable for shipboard collections.

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Year:  2007        PMID: 17662954     DOI: 10.1016/j.ab.2007.06.031

Source DB:  PubMed          Journal:  Anal Biochem        ISSN: 0003-2697            Impact factor:   3.365


  13 in total

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Authors:  Lora E Fleming; Barbara Kirkpatrick; Lorraine C Backer; Cathy J Walsh; Kate Nierenberg; John Clark; Andrew Reich; Julie Hollenbeck; Janet Benson; Yung Sung Cheng; Jerome Naar; Richard Pierce; Andrea J Bourdelais; William M Abraham; Gary Kirkpatrick; Julia Zaias; Adam Wanner; Eliana Mendes; Stuart Shalat; Porter Hoagland; Wendy Stephan; Judy Bean; Sharon Watkins; Tainya Clarke; Margaret Byrne; Daniel G Baden
Journal:  Harmful Algae       Date:  2011-01-01       Impact factor: 4.273

2.  Benthic herbivores are not deterred by brevetoxins produced by the red tide dinoflagellate Karenia brevis.

Authors:  Erik E Sotka; Amanda McCarty; Emily A Monroe; Nicole Oakman; Frances M Van Dolah
Journal:  J Chem Ecol       Date:  2009-07-11       Impact factor: 2.626

3.  Use of biosensors as alternatives to current regulatory methods for marine biotoxins.

Authors:  Natalia Vilariño; Eva S Fonfría; M Carmen Louzao; Luis M Botana
Journal:  Sensors (Basel)       Date:  2009-11-24       Impact factor: 3.576

4.  A new cytotoxicity assay for brevetoxins using fluorescence microscopy.

Authors:  Jennifer R McCall; Elizabeth A Elliott; Andrea J Bourdelais
Journal:  Mar Drugs       Date:  2014-09-23       Impact factor: 5.118

5.  Preparation of a Specific ssDNA Aptamer for Brevetoxin-2 Using SELEX.

Authors:  Rui-Yun Tian; Chao Lin; Shi-Yu Yu; Sheng Gong; Pan Hu; Yan-Song Li; Zong-Cheng Wu; Yang Gao; Yu Zhou; Zeng-Shan Liu; Hong-Lin Ren; Shi-Ying Lu
Journal:  J Anal Methods Chem       Date:  2016-12-12       Impact factor: 2.193

6.  Profiling of Brevetoxin Metabolites Produced by Karenia brevis 165 Based on Liquid Chromatography-Mass Spectrometry.

Authors:  Huihui Shen; Xiuxian Song; Yue Zhang; Peipei Zhang; Jing Li; Weijia Song; Zhiming Yu
Journal:  Toxins (Basel)       Date:  2021-05-14       Impact factor: 4.546

7.  Comparative analysis of three brevetoxin-associated bottlenose dolphin (Tursiops truncatus) mortality events in the Florida Panhandle region (USA).

Authors:  Michael J Twiner; Leanne J Flewelling; Spencer E Fire; Sabrina R Bowen-Stevens; Joseph K Gaydos; Christine K Johnson; Jan H Landsberg; Tod A Leighfield; Blair Mase-Guthrie; Lori Schwacke; Frances M Van Dolah; Zhihong Wang; Teresa K Rowles
Journal:  PLoS One       Date:  2012-08-15       Impact factor: 3.240

Review 8.  Azaspiracid shellfish poisoning: a review on the chemistry, ecology, and toxicology with an emphasis on human health impacts.

Authors:  Michael J Twiner; Nils Rehmann; Philipp Hess; Gregory J Doucette
Journal:  Mar Drugs       Date:  2008-05-07       Impact factor: 5.118

Review 9.  Neurotoxic shellfish poisoning.

Authors:  Sharon M Watkins; Andrew Reich; Lora E Fleming; Roberta Hammond
Journal:  Mar Drugs       Date:  2008-07-12       Impact factor: 5.118

10.  HPLC-HRMS Quantification of the Ichthyotoxin Karmitoxin from Karlodinium armiger.

Authors:  Aaron John Christian Andersen; Lívia Soman de Medeiros; Sofie Bjørnholt Binzer; Silas Anselm Rasmussen; Per Juel Hansen; Kristian Fog Nielsen; Kevin Jørgensen; Thomas Ostenfeld Larsen
Journal:  Mar Drugs       Date:  2017-08-31       Impact factor: 5.118

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