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Quantification of the trichothecene Verrucarin-A in environmental samples using an antibody-based spectroscopic biosensor

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Public Access

Post-print

Peer reviewed scientific article

Engels

DOI : https://doi.org/10.1016/j.snb.2012.03.008 [2]

Auteurs

Gosselin, E. [3]; Olivier J Denis [4]; Van Cauwenberge, A. [5]; Conti, J. [6]; Vanden Eynde, J.J. [7]; Huygen, K. [8]; De Coninck, J. [9]

Trefwoorden

  1. ELISA [10]
  2. Fluorescence [11]
  3. Fungi [12]
  4. mould [13]
  5. mycotoxin [14]
  6. Spectrometry [15]
  7. verrucarin [16]

Samenvatting:

Verrucarin A2 (VerA) is a toxic trichothecene mycotoxin that can be produced indoors at very low level by moulds contaminating dwellings and may be associated with several human health problems. In this study we describe a spectroscopic label-free biosensor for VerA. This sensor is based on the high sensitivity of Fourier transform infrared-attenuated reflection (FTIR-ATR) spectroscopic detection and the use of a new anti-VerA rat monoclonal antibody (mAb). This antibody was directly grafted at the surface of the infrared element. Competitive ELISA and FTIR-ATR techniques were compared…
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Samenvatting

Verrucarin A2 (VerA) is a toxic trichothecene mycotoxin that can be produced indoors at very low level by moulds contaminating dwellings and may be associated with several human health problems. In this study we describe a spectroscopic label-free biosensor for VerA. This sensor is based on the high sensitivity of Fourier transform infrared-attenuated reflection (FTIR-ATR) spectroscopic detection and the use of a new anti-VerA rat monoclonal antibody (mAb). This antibody was directly grafted at the surface of the infrared element. Competitive ELISA and FTIR-ATR techniques were compared for detection of VerA in buffer and in complex dust samples obtained from dwellings. After optimization, the competitive ELISA showed a sensitivity of 7.43 ng/ml of VerA in PBS and a dynamic range below one order of magnitude. The FTIR technique improved the detection of the VerA by three orders of magnitude (2 pg/ml in buffer and 6 pg/ml when spiked in dust samples). The dynamic range for its detection extended over four orders of magnitude. The percentage of recovery of VerA spiked (1000 ng to 0.1 ng) in a complex dust matrix ranged from 99 to 68%. Our results clearly show that this antibody-based spectroscopic biosensor allow a better detection of VerA as compared to classical immunoassays and can be very efficiently used in the field of indoor mycotoxin detection.

Associated health topics:


Source URL:https://www.sciensano.be/nl/biblio/quantification-trichothecene-verrucarin-a-environmental-samples-using-antibody-based-spectroscopic

Links
[1] https://www.sciensano.be/sites/default/files/bios-s-11-015451_1.pdf [2] https://doi.org/10.1016/j.snb.2012.03.008 [3] https://www.sciensano.be/nl/biblio?f%5Bauthor%5D=36405&f%5Bsearch%5D=Gosselin%2C%20E. [4] https://www.sciensano.be/nl/people/olivier-denis/biblio [5] https://www.sciensano.be/nl/biblio?f%5Bauthor%5D=36411&f%5Bsearch%5D=Van%20Cauwenberge%2C%20A. [6] https://www.sciensano.be/nl/biblio?f%5Bauthor%5D=36414&f%5Bsearch%5D=Conti%2C%20J. [7] https://www.sciensano.be/nl/biblio?f%5Bauthor%5D=36417&f%5Bsearch%5D=Vanden%20Eynde%2C%20J.J. [8] https://www.sciensano.be/nl/biblio?f%5Bauthor%5D=36420&f%5Bsearch%5D=Huygen%2C%20K. [9] https://www.sciensano.be/nl/biblio?f%5Bauthor%5D=36423&f%5Bsearch%5D=De%20Coninck%2C%20J. [10] https://www.sciensano.be/nl/biblio?f%5Bkeyword%5D=384&f%5Bsearch%5D=ELISA [11] https://www.sciensano.be/nl/biblio?f%5Bkeyword%5D=3996&f%5Bsearch%5D=Fluorescence [12] https://www.sciensano.be/nl/biblio?f%5Bkeyword%5D=3783&f%5Bsearch%5D=Fungi [13] https://www.sciensano.be/nl/biblio?f%5Bkeyword%5D=27858&f%5Bsearch%5D=mould [14] https://www.sciensano.be/nl/biblio?f%5Bkeyword%5D=28200&f%5Bsearch%5D=mycotoxin [15] https://www.sciensano.be/nl/biblio?f%5Bkeyword%5D=28203&f%5Bsearch%5D=Spectrometry [16] https://www.sciensano.be/nl/biblio?f%5Bkeyword%5D=28197&f%5Bsearch%5D=verrucarin