Optimizing Mirabegron Stability in Human Plasma: Method Development, Validation Through Integration of Esterase
Santosh Tawari1, Ujashkumar Shah1
1Nootan Pharmacy College, Sankalchand Patel University, Visnagar, Gujarat, India.
This study establishes a stable analytical method for quantifying mirabegron in human plasma. The optimized process ensures accurate drug measurement for therapeutic drug monitoring and pharmacokinetic studies.
Area of Science:
- Analytical Chemistry
- Pharmacology
- Biochemistry
Background:
- Mirabegron stability in human plasma is crucial for accurate quantification.
- Enzymatic and oxidative degradation poses challenges to mirabegron analysis.
- Development of stabilizing agents and inhibitors is necessary for reliable bioanalysis.
Purpose of the Study:
- To develop and validate a stability-indicating analytical method for mirabegron in human plasma.
- To assess the efficacy of various inhibitors and stabilizers in preventing mirabegron degradation.
- To ensure the method's suitability for bioequivalence testing, therapeutic drug monitoring, and pharmacokinetic studies.
Main Methods:
- Sample preparation involved solid-phase extraction (SPE) using Strata-X cartridges.
- Chromatographic separation was optimized on a C18 Kromasil column with an ammonium formate and acetonitrile mobile phase.
- Detection was performed using electrospray ionization (ESI) in positive mode with multiple reaction monitoring (MRM).
Main Results:
- The method demonstrated high accuracy (95.67%–102.85%) and precision (0.52%–2.31%).
- Linearity was established over a range of 0.100 to 102.496 ng/mL.
- The validated method requires minimal plasma volume (100 μL), has a short runtime (3 min), and achieves high recovery (92.93%).
Conclusions:
- A robust and efficient analytical method for mirabegron stability in human plasma was successfully developed.
- The method's stability, speed, and minimal sample requirement make it ideal for clinical applications.
- This validated assay is suitable for bioequivalence testing, therapeutic drug monitoring, and pharmacokinetic studies.
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