Abstract

A simple, specific, quick, isocratic Reversed Phase High Performance Liquid Chromatographic method was developed and validated for the analysis of Pregabalin in bulk and 5-different pharmaceutical formulations, the separation was accomplished on a C18, 5μm Reverse Phase column (250 mm × 4.6 mm) using a methanol : water (95:5, v/v) mobile phase. The compound was eluted isocratically at a flow rate of 0.8 ml /min. The UV detector was set at 288 nm for the detection of Pregabalin (PRG). The method was linear over the range of 5-45 μg/ml and validated with respect to accuracy, precision, linearity, and specificity, limit of detection and limit of quantization. Robustness testing was also conducted to evaluate the effect of minor changes to the chromatographic system and to establish appropriate system suitability parameters. This method was used successfully for the quality assessment of 5-different pharmaceutical formulations with good precision and accuracy.  Â

Highlights

  • Pregabalin (PRG) is chemically (S)-3-(amino methyl)-5-methyl hexanoic acid and is not official in any pharmacopoeia

  • There is no any official, sensitive, accurate, precise and chief analytical method developed for the analysis of pregabalin till and therapeutic importance of the drug has engendered development of assays for the quantification of PRG

  • This paper describes the Reverse Phase High Performance Liquid Chromatographic (RP-HPLC) method for estimation of PRG in bulk and 5-different pharmaceutical dosage forms

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Summary

Introduction

Pregabalin (PRG) is chemically (S)-3-(amino methyl)-5-methyl hexanoic acid and is not official in any pharmacopoeia. There is no any official, sensitive, accurate, precise and chief analytical method developed for the analysis of pregabalin till and therapeutic importance of the drug has engendered development of assays for the quantification of PRG. There is no HPLC method without derivatisation for the analysis of PRG. There is need for the development of a HPLC method for the analysis of PRG. An attempt has been made to develop a simple, quick, specific, accurate efficient and selective method for the analysis of PRG in bulk and pharmaceutical formulations. This paper describes the Reverse Phase High Performance Liquid Chromatographic (RP-HPLC) method for estimation of PRG in bulk and 5-different pharmaceutical dosage forms

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