Journal article

Detection of the tremorgenic mycotoxin paxilline and its desoxy analog in ergot of rye and barley: a new class of mycotoxins added to an old problem


Authors listBauer, JI; Gross, M; Cramer, B; Wegner, S; Hausmann, H; Hamscher, G; Usleber, E

Publication year2017

Pages5101-5112

JournalAnalytical and Bioanalytical Chemistry

Volume number409

Issue number21

ISSN1618-2642

DOI Linkhttps://doi.org/10.1007/s00216-017-0455-y

PublisherSpringer


Abstract
A newly developed enzyme immunoassay (EIA) for the detection of the tremorgenic indole-diterpene alkaloid paxilline (PAX) and closely related analogs was used to analyze ergot sclerotia collected from rye and barley fields. The mean EIA standard curve detection limit was 0.47 +/- 0.14 ng/mL; relative cross-reactivity of toxin standard solutions was found for 11-hydroxy-paspaline (terpendole E, 1.1%) but not for lolitrem B or ergot alkaloids. Sclerotia from all fields were positive in the PAX-EIA at concentration levels of 620 +/- 200 and 160 +/- 37 mu g/kg in ergot of rye and 130 +/- 47 mu g/kg in ergot of barley. Confirmatory analyses of sclerotia by liquid chromatography-tandem mass spectrometric detection identified PAX and its analog 13-desoxypaxilline. To the best of our knowledge, this is the first report on the natural occurrence of tremorgenic indole-diterpene alkaloid mycotoxins in ergot sclerotia from rye and barley. Along with details on the analytical methodology developed in this study, particularly PAX-antibody production, the relevance and implications of these findings for food and feed safety are discussed. Presence or absence of elevated levels of tremorgenic mycotoxins, along with the ergot alkaloids, would help in explaining the difference between the two distinct manifestations of historic ergotism, the convulsive and the gangrenous form. Further method development for paxilline and other tremorgenic mycotoxins in cereals used for food and feed is a prerequisite for a comprehensive risk assessment, which seems to be necessary in light of the findings reported here.



Citation Styles

Harvard Citation styleBauer, J., Gross, M., Cramer, B., Wegner, S., Hausmann, H., Hamscher, G., et al. (2017) Detection of the tremorgenic mycotoxin paxilline and its desoxy analog in ergot of rye and barley: a new class of mycotoxins added to an old problem, Analytical and Bioanalytical Chemistry, 409(21), pp. 5101-5112. https://doi.org/10.1007/s00216-017-0455-y

APA Citation styleBauer, J., Gross, M., Cramer, B., Wegner, S., Hausmann, H., Hamscher, G., & Usleber, E. (2017). Detection of the tremorgenic mycotoxin paxilline and its desoxy analog in ergot of rye and barley: a new class of mycotoxins added to an old problem. Analytical and Bioanalytical Chemistry. 409(21), 5101-5112. https://doi.org/10.1007/s00216-017-0455-y


Last updated on 2025-21-05 at 15:42