Literature DB >> 11122531

HPLC/MS analysis of fusarium mycotoxins, fumonisins and deoxynivalenol.

R D Plattner1.   

Abstract

Fusarium fungi are widely found in agricultural products, worldwide and can produce a great variety of mycotoxins. Fumonisins, produced by F. moniliforme, and deoxynivalenol, produced by F. graminearum, are two such mycotoxins that have received considerable attention as food safety concerns by regulatory agencies. High Performance Liquid Chromatography/Mass Spectrometry (HPLC/MS) was found to be a convenient analytical method to detect and quantify the naturally occurring fumonisin homologs and deoxynivalenol in extracts from grains and food products. The fumonisins are detected primarily as protonated molecules in the positive ion electrospray ionization (ESI) mode as they elute from a C-18 reverse phase column during a methanol water gradient containing acetic acid to facilitate chromatography. Deoxynivalenol can be detected as positive or negative ions in the atmospheric pressure chemical ionization (APCI) mode or in the negative ion ESI mode. One nanogram amounts of fumonisins or deoxynivalenol injected into the HPLC system are easily detected with signal to noise allowing detection limits of 1 microg g(-1) or better to easily be achieved with minimal clean-up of grain extracts.

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Year:  1999        PMID: 11122531

Source DB:  PubMed          Journal:  Nat Toxins        ISSN: 1056-9014


  6 in total

1.  Reducing production of fumonisin mycotoxins in Fusarium verticillioides by RNA interference.

Authors:  Eric T Johnson; Robert H Proctor; Christopher A Dunlap; Mark Busman
Journal:  Mycotoxin Res       Date:  2017-11-22       Impact factor: 3.833

2.  Analysis of Fusarium graminearum mycotoxins in different biological matrices by LC/MS.

Authors:  A C Bily; L M Reid; M E Savard; R Reddy; B A Blackwell; C M Campbell; A Krantis; T Durst; B J R Philogène; J T Arnason; C Regnault-Roger
Journal:  Mycopathologia       Date:  2004-01       Impact factor: 2.574

3.  Validation of an HPLC analytical method coupled to a multifunctional clean-up column for the determination of deoxynivalenol.

Authors:  Yoshiko Sugita-Konsihi; Toshitsugu Tanaka; Setsuko Tabata; Masahiro Nakajima; Masanori Nouno; Yoko Nakaie; Takao Chonan; Mitsutoshi Aoyagi; Nobuyuki Kibune; Kazutoshi Mizuno; Eiichi Ishikuro; Naoki Kanamaru; Masatoshi Minamisawa; Norio Aita; Masayo Kushiro; Kenji Tanaka; Kosuke Takatori
Journal:  Mycopathologia       Date:  2006-04       Impact factor: 2.574

4.  Differential detection of potentially hazardous Fusarium species in wheat grains by an electronic nose.

Authors:  Jakob Eifler; Eugenio Martinelli; Marco Santonico; Rosamaria Capuano; Detlev Schild; Corrado Di Natale
Journal:  PLoS One       Date:  2011-06-09       Impact factor: 3.240

5.  Development of a monoclonal antibody against deoxynivalenol for magnetic nanoparticle-based extraction and an enzyme-linked immunosorbent assay.

Authors:  Hyuk-Mi Lee; Sung-Ok Song; Sang-Ho Cha; Sung-Bok Wee; Karyn Bischoff; Sung-Won Park; Seong-Wan Son; Hwan-Goo Kang; Myung-Haing Cho
Journal:  J Vet Sci       Date:  2013-02-05       Impact factor: 1.672

6.  Identification of select fumonisin forming Fusarium species using PCR applications of the polyketide synthase gene and its relationship to fumonisin production in vitro.

Authors:  Richard Baird; Hamed K Abbas; Gary Windham; Paul Williams; Sonya Baird; Peter Ma; Rowena Kelley; Leigh Hawkins; Mary Scruggs
Journal:  Int J Mol Sci       Date:  2008-04-08       Impact factor: 6.208

  6 in total

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