Simultaneous Determination of 23 Pyrrolizidine and Tropane Alkaloids in Infusions from Dry Edible Flowers Using Optimized μSPEed ® Microextraction Prior to Their Analysis by UHPLC-IT-MS/MS.
Begoña Fernández-PintorSonia Morante-ZarceroIsabel SierraPublished in: Foods (Basel, Switzerland) (2024)
A miniaturized solid-phase extraction of two tropane alkaloids (TAs) and twenty-one pyrrolizidine alkaloids (PAs) from infusions of dry edible flowers using optimized µSPEed ® technique was developed. The optimization of the µSPEed ® methodology involved testing different cartridges and comparing various volumes and numbers of loading cycles. The final conditions allowed for a rapid extraction, taking only 3.5 min. This was achieved using a C18-ODS cartridge, conditioning with 100 µL of methanol (two cycles), loading 100 µL of the infusion sample (seven cycles), and eluting the analytes with 100 µL of methanol (two cycles). Prior to their analysis by UHPLC-IT-MS/MS, the extracts were evaporated and reconstituted in 100 µL of water (0.2% formic acid)/methanol (0.2% ammonia) 95:5 ( v / v ), allowing for a preconcentration factor of seven times. The methodology was successfully validated obtaining recoveries ranging between 87 and 97%, RSD of less than 12%, and MQL between 0.09 and 0.2 µg/L. The validated methodology was applied to twenty samples of edible flower infusions to evaluate the safety of these products. Two infusion samples obtained from Acmella oleracea and Viola tricolor were contaminated with 0.16 and 0.2 µg/L of scopolamine (TA), respectively, while the infusion of Citrus aurantium was contaminated with intermedine and lycopsamine (PAs) below the MQL.
Keyphrases
- simultaneous determination
- solid phase extraction
- liquid chromatography tandem mass spectrometry
- ms ms
- high performance liquid chromatography
- ultra high performance liquid chromatography
- tandem mass spectrometry
- molecularly imprinted
- liquid chromatography
- low dose
- gas chromatography mass spectrometry
- high resolution mass spectrometry
- gas chromatography
- risk assessment
- drinking water
- ionic liquid
- mass spectrometry
- data analysis
- high resolution