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Development of a new LC-MS method for accurate and sensitive determination of 33 pyrrolizidine and 21 tropane alkaloids in plant-based food matrices

Z. Dzuman, P. Jonatova, M. Stranska-Zachariasova, N. Prusova, O. Brabenec, A. Novakova, M. Fenclova, J. Hajslova

. 2020 ; 412 (26) : 7155-7167. [pub] 20200815

Jazyk angličtina Země Německo

Typ dokumentu časopisecké články

Perzistentní odkaz   https://www.medvik.cz/link/bmc21020017

Grantová podpora
TJ02000238 Technologická Agentura České Republiky
NPU I LO1601 Ministerstvo Školství, Mládeže a Tělovýchovy
CZ.2.16/3.1.00/24503 European Regional Development Fund

E-zdroje Online Plný text

NLK ProQuest Central od 2011-01-01 do Před 1 rokem
Medline Complete (EBSCOhost) od 2003-01-01 do Před 1 rokem
Health & Medicine (ProQuest) od 2011-01-01 do Před 1 rokem

Setting of maximum limits for a number of plant alkaloids is under discussion in the EU. The novel method developed and optimized in this study enables simultaneous determination of 21 tropane alkaloids (TAs) and 33 pyrrolizidine (PAs) together with their N-oxides (PANOs). For analysis of aqueous-methanolic extract, reversed phase ultra-high-performance liquid chromatography and tandem mass spectrometry (RP-U-HPLC-MS/MS) was employed. The method was validated for frequently contaminated matrices (i) sorghum, (ii) oregano, and (iii) mixed herbal tea. The recoveries at two spiking levels were in the range of 82-115%, 80-106%, and 78-117%, respectively, and repeatabilities were less than 19% for all analyte/matrix combinations. As regards the achieved limits of quantification (LOQ), their values were in the range of 0.5-10 μg kg-1. The crucial problem encountered during method development, co-elution of multiple groups of isomeric alkaloids, was overcome by subsequent sample separation in the second chromatographic system, hydrophilic interaction liquid chromatography (HILIC), providing different separation selectivity. Lycopsamine, echinatine, and indicine (co-elution group 1) and N-oxides of indicine and intermedine (co-elution group 2), which could not be resolved on the commonly used RP column, were possible to separate fully by using the HILIC system.

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