4.1 Article

Combination of quadrupole isotope dilution mass spectrometry with simultaneous derivatization and spray assisted droplet formation-liquid phase microextraction for the determination of methamphetamine in human urine and serum samples by gas chromatography mass spectrometry

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ELSEVIER SCIENCE INC
DOI: 10.1016/j.vascn.2022.107207

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Methamphetamine; Isotope dilution; Gas chromatography mass spectrometry; Derivatization; Spray assisted droplet formation-liquid phase; microextraction

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An analytical method using GC-MS was developed for the accurate determination of methamphetamine in urine and serum samples. The method involved simultaneous derivatization and preconcentration using SADF-LPME, and high accuracy was achieved through quadruple isotope dilution. The combination of SADF-LPME and ID4 resulted in high recovery rates for urine and serum samples, demonstrating the applicability and accuracy of the method.
In this study, an analytical method with high accuracy and precision was developed for the determination of methamphetamine in human urine and serum samples by gas chromatography-mass spectrometry (GC-MS). A simultaneous derivatization and spray assisted droplet formation-liquid phase microextraction (SADF-LPME) method was proposed to derivatize and preconcentrate target analyte. Quadruple isotope dilution (ID4) was used to provide high accuracy and precision for methamphetamine determination in the samples. After the optimization studies for the derivatization and microextraction parameters, limit of detection (LOD) and limit of quantitation (LOQ) for the developed SADF-LPME method were found to be 48.0 and 159.9 mu g/kg, respectively. Recovery studies were implemented to verify the applicability and accuracy of the developed method for human urine and serum samples. The SADF-LPME method gave low percent recovery results (30.5-61.0%) for the spiked urine and serum samples showing that it failed to minimize or eliminate matrix effects for the analyte. Hence, methamphetamine acetamide-d3 was synthesized and purified in our research laboratory to be used as meth amphetamine isotopic analogue in the ID4 method. When the SADF-LPME method was combined with ID4, the percent recovery values for urine and serum samples were calculated as 99.7-100.0% and 99.4-100.2%, respectively. These results demonstrated the applicability and accuracy of the proposed method for urine and serum samples.

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