Validation of a UHPLC-FLD analytical method for the simultaneous quantification of aflatoxin B1 and ochratoxin a in rat plasma, liver and kidney

A rapid and simple method for the simultaneous quantification of AFB1 and OTA in rat plasma, liver and kidney by UHPLC-FLD has been successfully validated according to the following criteria: selectivity, stability, linearity, precision, accuracy, recovery, robustness and limits of quantification an...

Full description

Bibliographic Details
Authors: Corcuera, L.A. (Laura Ana)|||/items/43716f68-33a0-47aa-8d48-1df70c45ac0b, Ibañez-Vea, M. (María)|||/items/8f707ac8-af47-42aa-8094-4373555f14e0, Vettorazzi, A. (Ariane)|||/items/b1ef6cda-f150-427f-b212-9f29c2c4f557, Gonzalez-Peñas, E. (Elena)|||/items/0e4b9ed7-4224-4664-a4f1-c6403a8c833f, Lopez-de-Cerain, A. (Adela)|||/items/8d95b72a-6816-4612-884b-5cf5c6c172f1
Format: article
Publication Date:2011
Country:España
Institution:Universidad de Navarra
Repository:Dadun. Depósito Académico Digital de la Universidad de Navarra
Language:English
OAI Identifier:oai:dadun.unav.edu:10171/36577
Online Access:https://hdl.handle.net/10171/36577
Access Level:Open access
Keyword:Aflatoxin B1
Ochratoxin A
UHPLC-FLD
Validation
Plasma
Tissues
Description
Summary:A rapid and simple method for the simultaneous quantification of AFB1 and OTA in rat plasma, liver and kidney by UHPLC-FLD has been successfully validated according to the following criteria: selectivity, stability, linearity, precision, accuracy, recovery, robustness and limits of quantification and detection. The extraction method, calibration curves and chromatographic conditions are common for the three matrices. Plasma and homogenized tissue samples (100 μL) were extracted with acetonitrile-formic acid mixture (99:1) (300 μL). Chromatographic separation was performed with a mixture of water and acetonitrile:methanol (50:50), both acidified with 0.5% of formic acid using a gradient profile. The method avoids the use of immunoaffinity columns and allows reduction of sample and solvent volumes as well as toxic wastes. The detection is based on a photochemical reaction which enhances the AFB1 response without affecting the OTA signal before reaching the fluorescent detector. The mycotoxin recovery for each matrix was very efficient, between 93% and 96% for AFB1 and between 94% and 96% for OTA. For both mycotoxins the LOQs were 2 μg/L in plasma and 8 μg/kg in liver and kidney. The method has successfully been applied to rat samples after a single oral administration of a mixture of AFB1 and OTA and it could be a useful tool in toxicokinetic and toxicological studies.