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First identification of dapagliflozin in human hair: Development of a new liquid chromatography with tandem mass spectrometry method. | LitMetric

AI Article Synopsis

  • Sodium-glucose cotransporter 1 inhibitors, or gliflozins, are new medications for type II diabetes that promote weight loss through their diuretic effects, potentially appealing beyond just diabetic patients.
  • This study developed a method using liquid chromatography and mass spectrometry to test for three gliflozins in hair, finding that it can detect these substances with high sensitivity and acceptable accuracy.
  • The method was tested on two diabetic patients: one tested negative for dapagliflozin in hair, while the other had a low concentration, with reasons for the negative result being unclear due to the drug's properties potentially affecting hair incorporation.

Article Abstract

Sodium-glucose cotransporter 1 inhibitors are a new class of drugs used for the treatment of type II diabetes. Due to their diuretic capabilities and the glycosuria they induce, these molecules cause effective weight loss that could attract the interest of a wider public than diabetics with all the health consequences knowing the adverse effects of these substances. In order to reveal a past exposure to these substances, hair analysis can be very useful especially in the medicolegal context. There are no data in the literature about gliflozin testing in hair. In this study, a method was developed for the analysis of three molecules belonging to the gliflozin family (dapagliflozin, empagliflozin and canagliflozin) using a liquid chromatography system coupled to tandem mass spectrometry. After decontamination with dichloromethane, gliflozins were extracted from hair following incubation in methanol in the presence of dapagliflozin-d5. Validation showed acceptable linearity for all compounds between 10 and 10,000 pg/mg, with limit of detection and limit of quantification at 5 and 10 pg/mg, respectively. Repeatability and reproducibility were below 20% at three concentrations for all analytes. The method was subsequently applied to the hair of two diabetic subjects under dapagliflozin treatment. In one of the two cases, the result was negative, while in the second case, the concentration was 12 pg/mg. Due to the absence of data, it is difficult to explain the absence of dapagliflozin in the hair of the first case. Physico-chemical characteristics of dapagliflozin could explain its bad incorporation in hair, making detection difficult even after daily treatment.

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Source
http://dx.doi.org/10.1002/dta.3457DOI Listing

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