Determination of Ochratoxin A and Ochratoxin B in Archived Tokaj Wines (Vintage 1959-2017) Using On-Line Solid Phase Extraction Coupled to Liquid Chromatography.
Aneta KholováIvona LhotskáAdéla UhrováIvan ŠpánikAndrea MachyňákováPetr SolichFrantišek ŠvecDalibor ŠatínskýPublished in: Toxins (2020)
According to the EU legislation, ochratoxin A contamination is controlled in wines. Tokaj wine is a special type of sweet wine produced from botrytized grapes infected by "noble rot" Botrytis cinerea. Although a high contamination was reported in sweet wines and noble rot grapes could be susceptible to coinfection with other fungi, including ochratoxigenic species, no screening of Tokaj wines for mycotoxin contamination has been carried out so far. Therefore, we developed an analytical method for the determination of ochratoxin A (OTA) and ochratoxin B (OTB) involving online SPE coupled to HPLC-FD using column switching to achieve the fast and sensitive control of mycotoxin contamination. The method was validated with recoveries ranging from 91.6% to 99.1% with an RSD less than 2%. The limits of quantification were 0.1 and 0.2 µg L-1 for OTA and OTB, respectively. The total analysis time of the online SPE-HPLC-FD method was a mere 6 min. This high throughput enables routine analysis. Finally, we carried out an extensive investigation of the ochratoxin contamination in 59 Slovak Tokaj wines of 1959-2017 vintage. Only a few positives were detected. The OTA content in most of the checked wines did not exceed the EU maximum tolerable limit of 2 µg L-1, indicating a good quality of winegrowing and storing.
Keyphrases
- solid phase extraction
- liquid chromatography
- high performance liquid chromatography
- tandem mass spectrometry
- molecularly imprinted
- liquid chromatography tandem mass spectrometry
- simultaneous determination
- risk assessment
- drinking water
- mass spectrometry
- gas chromatography mass spectrometry
- health risk
- high resolution mass spectrometry
- ultra high performance liquid chromatography
- high throughput
- gas chromatography
- human health
- ms ms
- social media
- health information
- single cell
- high resolution
- heavy metals
- climate change