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1.
Int J Anal Chem ; 2018: 1605950, 2018.
Article in English | MEDLINE | ID: mdl-30510578

ABSTRACT

An accurate, highly sensitive, and precise method for quantitative analysis of tramadol (TMD) and gabapentin (GBP) by high performance liquid chromatography and tandem mass spectrometry in human plasma was proposed and validated successfully using venlafaxine and pregabalin as internal standards (ISTDs), respectively. An aliquot of 200 µL of plasma was mixed with internal standard dilution and extraction was performed by using solid phase extraction (SPE) technique. Peak resolution was achieved on Phenomenex PFP column (50×4.6 mm, 2.6 µm). The total analytical run time was 3.8 min. Both analytes were monitored using multiple reaction monitoring (MRM) scan and the mass spectrometer was operated in positive polarity mode. The method was validated for specificity, sensitivity, precision, accuracy, and other analytical parameters. The results found were satisfactory over the linear calibration range of 1-500 ng/mL and 10-6000 ng/mL for TMD and GBP, respectively. The developed method can be ready to use by scientific community for quantification of analytes in plasma samples from various clinical studies of different dose strengths.

2.
J Pharm Biomed Anal ; 152: 215-223, 2018 Apr 15.
Article in English | MEDLINE | ID: mdl-29427880

ABSTRACT

Highly selective and fast liquid chromatography-tandem mass spectrometric (LC-MS/MS) method was developed and validated for simultaneous determination of tadalafil (TDL) and finasteride (FNS) in human plasma. The method was successfully applied for analysis of TDL and FNS samples in clinical study. The method was validated as per USFDA (United States Food and Drug Administration), EMA (European Medicines Agency), and ANVISA (Agência Nacional de Vigilância Sanitária-Brazil) bio analytical method validation guidelines. Glyburide (GLB) was used as common internal standard (ISTD) for both analytes. The selected multiple reaction monitoring (MRM) transitions for mass spectrometric analysis were m/z 390.2/268.2, m/z 373.3/305.4 and m/z 494.2/369.1 for TDL, FNS and ISTD respectively. The extraction of analytes and ISTD was accomplished by a simple solid phase extraction (SPE) procedure. Rapid analysis time was achieved on Zorbax Eclipse C18 column (50 × 4.6 mm, 5 µm). The calibration ranges for TDL and FNS were 5-800 ng/ml and 0.2-30 ng/ml respectively. The results of precision and accuracy, linearity, recovery and matrix effect of the method are acceptable. The accuracy was in the range of 92.9%-106.4% and method precision was also good; %CV was less than 8.1%.


Subject(s)
Finasteride/blood , Tadalafil/blood , Calibration , Chromatography, High Pressure Liquid/methods , Glyburide/blood , Humans , Reproducibility of Results , Solid Phase Extraction/methods , Tandem Mass Spectrometry/methods
3.
Article in English | MEDLINE | ID: mdl-27038402

ABSTRACT

A cost effective, sensitive, simple, and rapid high-performance liquid chromatography-tandem mass spectrometry method was developed and validated for the quantification of the prasugrel metabolite in human plasma. Following solid phase extraction, the analyte (prasugrel active metabolite; R-138727) and internal standard (emtricitabine) were separated using a mobile phase in an isocratic elution mode on a reverse phase C18 column and were analyzed by an LC-MS/MS in the multiple reaction monitoring mode using the respective [M+H](+) ions, m/z 498.3-206.0 for R-138727 and m/z 248.2-130.1 for the internal standard. The assay exhibited a linear dynamic range of 0.2-120 ng/mL. The lower limit of quantification was 0.2 ng/mL with a relative standard deviation of 5.0%. This LC-MS/MS method was validated with intra-batch and inter-batch precision and accuracy. Results for precision and accuracy are in range of 3.9-9.6% and 95.2-102.2% respectively. This validated method is simple and repeatable to use in bioequivalence/pharmacokinetic studies.


Subject(s)
Chromatography, Liquid/methods , Piperazines/blood , Prasugrel Hydrochloride/blood , Tandem Mass Spectrometry/methods , Humans , Linear Models , Reproducibility of Results , Sensitivity and Specificity
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