The Experts below are selected from a list of 237 Experts worldwide ranked by ideXlab platform

Pierre Doumenq - One of the best experts on this subject based on the ideXlab platform.

  • A simple GC-MS method for the determination of diphenylamine, tolylfluanid propargite and Phosalone in liver fractions.
    Journal of chromatography. B Analytical technologies in the biomedical and life sciences, 2019
    Co-Authors: Ali Kadar, Ludovic Peyre, Henri Wortham, Pierre Doumenq
    Abstract:

    Abstract In this study, an accurate and robust gas chromatography/mass spectrometry method was developed for quantitative analysis of diphenylamine, tolylfluanid, propargite and Phosalone in liver fractions. Different injector parameters were optimized by an experimental design technique (central composite design). An optimal combination of injector temperature (°C), splitless time (min) and overpressure (kPa) values enabled to maximize the chromatographic responses. Sample preparation was based on protein precipitation using trichloroacetic acid followed by liquid-liquid extraction (LLE) of the pesticides with hexane. All compounds and endrin as internal standard were quantified without interference in selected ion monitoring mode. The calibration curves for diphenylamine, tolylfluanid, propargite and Phosalone compounds were linear over the concentration range of 0.1 to 25 μM with determination coefficients (R2) higher than 0.999. A lower limit of quantification of 0.1 μM was obtained for all analytes, i.e. 422.5, 868.0, 876.2 and 919.5 μg/kg of liver fraction (hepatocytes) for diphenylamine, tolylfluanid, propargite and Phosalone, respectively. All compounds showed extraction recoveries higher than 93%, with a maximum RSD of 3.4%. Intra- and inter-day accuracies varied from 88.4 to 102.9% and, imprecision varied from 1.1 to 6.7%. Stability tests demonstrated that all pesticides were stable in liver extracts during instrumental analysis (20 °C in the autosampler tray for 72 h) following three successive freeze-thaw cycles and, at −20 °C for up to 12 months. This simple and efficient analytical procedure is thus suitable for metabolism studies or for assessing mammals liver contamination.

Ali Kadar - One of the best experts on this subject based on the ideXlab platform.

  • A simple GC-MS method for the determination of diphenylamine, tolylfluanid propargite and Phosalone in liver fractions.
    Journal of chromatography. B Analytical technologies in the biomedical and life sciences, 2019
    Co-Authors: Ali Kadar, Ludovic Peyre, Henri Wortham, Pierre Doumenq
    Abstract:

    Abstract In this study, an accurate and robust gas chromatography/mass spectrometry method was developed for quantitative analysis of diphenylamine, tolylfluanid, propargite and Phosalone in liver fractions. Different injector parameters were optimized by an experimental design technique (central composite design). An optimal combination of injector temperature (°C), splitless time (min) and overpressure (kPa) values enabled to maximize the chromatographic responses. Sample preparation was based on protein precipitation using trichloroacetic acid followed by liquid-liquid extraction (LLE) of the pesticides with hexane. All compounds and endrin as internal standard were quantified without interference in selected ion monitoring mode. The calibration curves for diphenylamine, tolylfluanid, propargite and Phosalone compounds were linear over the concentration range of 0.1 to 25 μM with determination coefficients (R2) higher than 0.999. A lower limit of quantification of 0.1 μM was obtained for all analytes, i.e. 422.5, 868.0, 876.2 and 919.5 μg/kg of liver fraction (hepatocytes) for diphenylamine, tolylfluanid, propargite and Phosalone, respectively. All compounds showed extraction recoveries higher than 93%, with a maximum RSD of 3.4%. Intra- and inter-day accuracies varied from 88.4 to 102.9% and, imprecision varied from 1.1 to 6.7%. Stability tests demonstrated that all pesticides were stable in liver extracts during instrumental analysis (20 °C in the autosampler tray for 72 h) following three successive freeze-thaw cycles and, at −20 °C for up to 12 months. This simple and efficient analytical procedure is thus suitable for metabolism studies or for assessing mammals liver contamination.

Sandro Navickiene - One of the best experts on this subject based on the ideXlab platform.

  • two dimensional coordination polymer matrix for solid phase extraction of pesticide residues from plant cordia salicifolia
    IEEE Journal of Solid-state Circuits, 2009
    Co-Authors: Pedro Henrique Viana De Carvalho, Alysson Santos Barreto, Marcelo O Rodrigues, Vanessa De Menezes Prata, Pericles Barreto Alves, Maria Eliane De Mesquita, Severino Alves, Sandro Navickiene
    Abstract:

    The 2D coordination polymer (infinity[Gd(DPA)(HDPA)]) was tested for extraction of acephate, chlorpropham, pirimicarb, bifenthrin, tetradifon, and Phosalone from the medicinal plant Cordia salicifolia, whose extracts are commercialized in Brazil as diuretic, appetite suppressant, and weight loss products, using GC/MS, SIM. Considering that there are no Brazilian regulations concerning maximum permissible pesticide residue concentrations in medicinal herbs, recovery experiments were carried out (seven replicates), at two arbitrary fortification levels (0.5 and 1.0 mg/kg), resulting in recoveries in range of 20 to 107.7% and SDRSDs were between 5.6 and 29.1% for infinity[Gd(DPA)(HDPA)] sorbent. Detection and quantification limits for herb ranged from 0.10 to 0.15 mg/kg and from 0.15 to 0.25 mg/kg, respectively, for the different pesticides studied. The developed method is linear over the range assayed, 0.5-10.0 microg/mL, with correlation coefficients ranging from 0.9975 to 0.9986 for all pesticides. Comparison between infinity[Gd(DPA)(HDPA)] sorbent and conventional sorbent (neutral alumina) showed similar performance of infinity[Gd(DPA)(HDPA)] polymeric sorbent for three (bifenthrin, tetradifon, and Phosalone) out of six pesticides tested.

Ludovic Peyre - One of the best experts on this subject based on the ideXlab platform.

  • A simple GC-MS method for the determination of diphenylamine, tolylfluanid propargite and Phosalone in liver fractions.
    Journal of chromatography. B Analytical technologies in the biomedical and life sciences, 2019
    Co-Authors: Ali Kadar, Ludovic Peyre, Henri Wortham, Pierre Doumenq
    Abstract:

    Abstract In this study, an accurate and robust gas chromatography/mass spectrometry method was developed for quantitative analysis of diphenylamine, tolylfluanid, propargite and Phosalone in liver fractions. Different injector parameters were optimized by an experimental design technique (central composite design). An optimal combination of injector temperature (°C), splitless time (min) and overpressure (kPa) values enabled to maximize the chromatographic responses. Sample preparation was based on protein precipitation using trichloroacetic acid followed by liquid-liquid extraction (LLE) of the pesticides with hexane. All compounds and endrin as internal standard were quantified without interference in selected ion monitoring mode. The calibration curves for diphenylamine, tolylfluanid, propargite and Phosalone compounds were linear over the concentration range of 0.1 to 25 μM with determination coefficients (R2) higher than 0.999. A lower limit of quantification of 0.1 μM was obtained for all analytes, i.e. 422.5, 868.0, 876.2 and 919.5 μg/kg of liver fraction (hepatocytes) for diphenylamine, tolylfluanid, propargite and Phosalone, respectively. All compounds showed extraction recoveries higher than 93%, with a maximum RSD of 3.4%. Intra- and inter-day accuracies varied from 88.4 to 102.9% and, imprecision varied from 1.1 to 6.7%. Stability tests demonstrated that all pesticides were stable in liver extracts during instrumental analysis (20 °C in the autosampler tray for 72 h) following three successive freeze-thaw cycles and, at −20 °C for up to 12 months. This simple and efficient analytical procedure is thus suitable for metabolism studies or for assessing mammals liver contamination.

Henri Wortham - One of the best experts on this subject based on the ideXlab platform.

  • A simple GC-MS method for the determination of diphenylamine, tolylfluanid propargite and Phosalone in liver fractions.
    Journal of chromatography. B Analytical technologies in the biomedical and life sciences, 2019
    Co-Authors: Ali Kadar, Ludovic Peyre, Henri Wortham, Pierre Doumenq
    Abstract:

    Abstract In this study, an accurate and robust gas chromatography/mass spectrometry method was developed for quantitative analysis of diphenylamine, tolylfluanid, propargite and Phosalone in liver fractions. Different injector parameters were optimized by an experimental design technique (central composite design). An optimal combination of injector temperature (°C), splitless time (min) and overpressure (kPa) values enabled to maximize the chromatographic responses. Sample preparation was based on protein precipitation using trichloroacetic acid followed by liquid-liquid extraction (LLE) of the pesticides with hexane. All compounds and endrin as internal standard were quantified without interference in selected ion monitoring mode. The calibration curves for diphenylamine, tolylfluanid, propargite and Phosalone compounds were linear over the concentration range of 0.1 to 25 μM with determination coefficients (R2) higher than 0.999. A lower limit of quantification of 0.1 μM was obtained for all analytes, i.e. 422.5, 868.0, 876.2 and 919.5 μg/kg of liver fraction (hepatocytes) for diphenylamine, tolylfluanid, propargite and Phosalone, respectively. All compounds showed extraction recoveries higher than 93%, with a maximum RSD of 3.4%. Intra- and inter-day accuracies varied from 88.4 to 102.9% and, imprecision varied from 1.1 to 6.7%. Stability tests demonstrated that all pesticides were stable in liver extracts during instrumental analysis (20 °C in the autosampler tray for 72 h) following three successive freeze-thaw cycles and, at −20 °C for up to 12 months. This simple and efficient analytical procedure is thus suitable for metabolism studies or for assessing mammals liver contamination.