Publikasi Scopus 2024 per tanggal 31 Juli 2024 (607 artikel)

Harahap Y.; Mulyadi C.A.; Muliawan H.S.; Wahab H.A.
Harahap, Yahdiana (16480400300); Mulyadi, Callista Andinie (57208649574); Muliawan, Hary Sakti (57203644653); Wahab, Habibah A. (6603194195)
16480400300; 57208649574; 57203644653; 6603194195
Determination of warfarin in volumetric absorptive microsampling by liquid chromatography-tandem mass spectrometry
2024
Heliyon
10
14
e34500
0
Faculty of Pharmacy, Universitas Indonesia, Depok, 16424, Indonesia; Faculty of Military Pharmacy, the Republic of Indonesia Defense University, Bogor, 16810, Indonesia; Department of Cardiology and Vascular Medicine, Faculty of Medicine-Universitas Indonesia Hospital, Depok, 16424, Indonesia; School of Pharmaceutical Sciences, Universiti Sains Malaysia, Pinang, Pulau, 11800, Malaysia
Harahap Y., Faculty of Pharmacy, Universitas Indonesia, Depok, 16424, Indonesia, Faculty of Military Pharmacy, the Republic of Indonesia Defense University, Bogor, 16810, Indonesia; Mulyadi C.A., Faculty of Pharmacy, Universitas Indonesia, Depok, 16424, Indonesia; Muliawan H.S., Department of Cardiology and Vascular Medicine, Faculty of Medicine-Universitas Indonesia Hospital, Depok, 16424, Indonesia; Wahab H.A., School of Pharmaceutical Sciences, Universiti Sains Malaysia, Pinang, Pulau, 11800, Malaysia
Objective: This study aims to develop and validate bioanalytical method for quantifying warfarin in VAMS samples using liquid chromatography tandem mass spectrometry (LC-MS/MS), directly implementing the method to patients receiving warfarin therapy. Methods: The UPLC-MS/MS method was developed and optimized, with quercetin as the internal standard. Sample preparation was carried out using protein precipitation with methanol-acetonitrile (1:3 v/v). Results: Chromatographic separation was achieved using Acquity® UPLC BEH C18 column with 0.1 % formic acid-acetonitrile-methanol (30:69:1 v/v) as mobile phase, in isocratic elution. Multiple Reaction Monitoring (MRM) detection was done using m/z values of 307.10 → 161.06 for warfarin and 301.03 → 150.98 for quercetin as internal standard, using Electrospray Ionization (ESI) negative ion source. The clinical application of the bioanalytical method was carried out on 25 patients receiving warfarin therapy at Universitas Indonesia Hospital and warfarin levels were well within the calibration range from 6.05 to 431.39 ng/mL. Conclusion: A novel method has been developed to analyze warfarin in VAMS samples. This method has been fully validated according to guideline from FDA 2022 and is linear in the range of 5–500 ng/mL and the value of r ≥ 0.9977, and successfully applied for the analysis of warfarin in VAMS samples of clinical patients. © 2024
LC-MS/MS; Therapeutic drug monitoring; Volumetric absorptive microsampling; Warfarin
Directorate of Research and Development Universitas Indonesia, (2023)
This work was supported by the Directorate of Research and Development Universitas Indonesia, Depok, Indonesia under PUTI Grant 2023.
Elsevier Ltd
24058440
Article
Q1
609
8422