Pharmacokinetic Evaluation of Metabolic Drug Interactions between Repaglinide and Celecoxib by a Bioanalytical HPLC Method for Their Simultaneous Determination with Fluorescence Detection.
Dong-Gyun HanJinsook KwakSeong-Wook SeoJi-Min KimJin-Wook YooYunjin JungYun-Hee LeeMin-Soo KimYoung-Suk JungHwayoung YunIn-Soo YoonPublished in: Pharmaceutics (2019)
Since diabetes mellitus and osteoarthritis are highly prevalent diseases, combinations of antidiabetic agents like repaglinide (REP) and non-steroidal anti-inflammatory drugs (NSAID) like celecoxib (CEL) could be commonly used in clinical practice. In this study, a simple and sensitive bioanalytical HPLC method combined with fluorescence detector (HPLC-FL) was developed and fully validated for simultaneous quantification of REP and CEL. A simple protein precipitation procedure and reversed C18 column with an isocratic mobile phase (mixture of ACN and pH 6.0 phosphate buffer) were employed for sample preparation and chromatographic separation. The fluorescence detector was set at a single excitation/emission wavelength pair of 240 nm/380 nm. The linearity (10-2000 ng/mL), accuracy, precision, extraction recovery, matrix effect, and stability for this method were validated as per the current FDA guidance. The bioanalytical method was applied to study pharmacokinetic interactions between REP and CEL in vivo, successfully showing that concurrent administration with oral REP significantly altered the pharmacokinetics of oral CEL. Furthermore, an in vitro metabolism and protein binding study using human materials highlighted the possibility of metabolism-based interactions between CEL and REP in clinical settings.
Keyphrases
- simultaneous determination
- liquid chromatography tandem mass spectrometry
- liquid chromatography
- high performance liquid chromatography
- solid phase extraction
- tandem mass spectrometry
- anti inflammatory drugs
- ms ms
- ultra high performance liquid chromatography
- clinical practice
- mass spectrometry
- photodynamic therapy
- single molecule
- molecularly imprinted
- endothelial cells
- rheumatoid arthritis
- magnetic resonance imaging
- small molecule
- skeletal muscle
- protein protein
- magnetic resonance
- squamous cell carcinoma
- type diabetes
- high resolution mass spectrometry
- knee osteoarthritis
- radiation therapy
- image quality
- locally advanced
- sensitive detection
- monte carlo
- high resolution