Developing, optimizing, and assessing a green electrophoretic method for determination of benzbromarone and allopurinol with its active metabolite in biological and pharmaceutical matrices

J Sep Sci. 2021 Apr;44(7):1461-1470. doi: 10.1002/jssc.202000934. Epub 2021 Feb 10.

Abstract

A combination of allopurinol and benzbromarone is a common gout treatment protocol. A suboptimal response to allopurinol in patients is very common due to its pharmacokinetics variability. Moreover, the safe doses of benzbromarone is very crucial in patients with hepatic diseases. This raised the inquisitiveness to develop and optimize a capillary zone electrophoresis method for the determination of allopurinol and benzbromarone in their coformulation and in the presence of oxypurinol, the active metabolite of allopurinol, in biological and pharmaceutical matrices. The method greenness profile was assessed using green metric tools the "National Environmental Method Index," the "Analytical Eco-Scale," and the "Green Analytical Procedure Index" by which the method proved to be ecofriendly. The method was successfully applied for the analysis of the pharmaceutical preparation and urine samples spiked with both drugs and the active metabolite. The linearity range was 25.0-250.0 μg/mL for benzbromarone, 50.0-350.0 μg/mL for allopurinol, and 100.0-500.0 μg/mL for oxypurinol. The recoveries were 99.60 ± 0.67, 99.89 ± 0.98, and 98.71 ± 1.18% for benzbromarone, allopurinol, and oxypurinol, respectively. The analysis results indicate potential usefulness of capillary zone electrophoresis as a competitive and greener method of analysis in biological and quality control labs.

Keywords: allopurinol; benzbromarone; capillary electrophoresis; green metric tools; oxypurinol.

MeSH terms

  • Allopurinol / analysis*
  • Allopurinol / metabolism
  • Benzbromarone / analysis*
  • Benzbromarone / metabolism
  • Electrophoresis, Capillary
  • Hydrogen-Ion Concentration
  • Molecular Structure
  • Quality Control

Substances

  • Benzbromarone
  • Allopurinol