Reversed‐phase high‐performance liquid chromatography analytical method development and validation for cefepime and sulbactam injection formulation assay: A quality by design approach

Author:

Mondal Sitanshu1,Asati Vivek2ORCID,Verma Sant Kumar2ORCID,Gupta Ghanshyam Das3,Kurmi Balak Das3ORCID,Patel Preeti2ORCID

Affiliation:

1. Department of Pharmaceutical Analysis ISF College of Pharmacy Moga Punjab India

2. Department of Pharmaceutical Chemistry ISF College of Pharmacy Moga Punjab India

3. Department of Pharmaceutics ISF College of Pharmacy Moga Punjab India

Abstract

AbstractA trustworthy high‐performance liquid chromatography approach for the simultaneous measurement of cefepime and sulbactam was created using quality by design. Finding reliable chromatographic settings for quality peaks and suitable component separation within a manageable run time was the key objective. Critical quality attributes for risk measurement were evaluated. To create an analytical design space and create a control strategy, the quantitative link between critical material attributes and critical quality attributes was built. Acetonitrile volume, trimethylamine volume, and flow rate were the three independent parameters considered in the mathematical models. Acetonitrile:high‐performance liquid chromatography water:triethylamine and pH 6.0, adjusted with orthophosphoric acid (50.0:50:0.15, v/v/v) as the mobile phase at 1.1 ml/min, were the ideal and anticipated conditions. We obtained appropriate baseline separation of both medications in about 10 min using these ideal conditions. The main determinant of the perturbation plot responses was found to be the quantity of acetonitrile. At all three levels, the percent recoveries for both medications ranged from 99% to 99.68%. Relative standard deviations were less than 2% for both drugs' intermediate accuracy and repeatability. A straightforward, precise, and repeatable high‐performance liquid chromatography method for regular quality control testing was created as a consequence.

Publisher

Wiley

Subject

Filtration and Separation,Analytical Chemistry

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