Department of Pharmaceutics, School of Pharmaceutical Education and Research, Jamia Hamdard, New Delhi 110062, India.
Department of Pharmaceutical Chemistry, College of Pharmacy, Prince Sattam Bin Abdulaziz University, Al-Kharj 11942, Saudi Arabia.
J Chromatogr Sci. 2021 Jan 1;59(1):79-87. doi: 10.1093/chromsci/bmaa080.
The present study described the development of a reversed-phase liquid chromatographic method for the estimation of abiraterone acetate by Quality by Design (QbD) approach. Using an isocratic solvent system for the mobile phase, the chromatographic estimation of analyte was performed on a Hypersil BDS C18 column using mobile phase mixture containing acetonitrile and water with pH adjusted with 0.1% v/v orthophosphoric acid (15:85%v/v ratio), flow rate 1.0 mL.min-1 and detection at 250 nm using photodiode array detector. Systematic development of the chromatographic method was carried out by factor screening using a half-factorial design which suggested organic modifier (%), flow rate (mL.min-1) and autosampler temperature (°C) as influential variables. Further, the method was optimized by Box-Behnken design and trials performed were evaluated for the area under peak, retention time, theoretical plate count and tailing factor as the responses. Validation of the developed method showed good linearity, accuracy, precision and sensitivity. Evaluation of the stability-indicating profile of the method using forced degradation studies revealed the formation of a possible degradation product under acidic and alkaline conditions, while no such degradation product peaks were observed under the oxidative environment. Overall, the study construed the successful development of HPLC assay method for pharmaceutical applications.
本研究描述了一种反相液相色谱法,通过质量源于设计(QbD)方法来评估醋酸阿比特龙的含量。采用等度溶剂系统作为流动相,在 Hypersil BDS C18 柱上,使用含有乙腈和水的流动相混合物(pH 值用 0.1%v/v 正磷酸调整,比例为 15:85%v/v),流速为 1.0 mL.min-1,检测波长为 250nm,使用光电二极管阵列检测器进行分析。通过使用半因子设计进行因子筛选,对色谱方法进行了系统的开发,结果表明有机改性剂(%)、流速(mL.min-1)和自动进样器温度(°C)是有影响的变量。进一步通过 Box-Behnken 设计对方法进行了优化,试验结果以峰面积、保留时间、理论塔板数和拖尾因子作为响应进行了评价。所开发方法的验证表明具有良好的线性、准确性、精密度和灵敏度。通过强制降解研究评估该方法的稳定性指示特征,结果表明在酸性和碱性条件下会形成可能的降解产物,而在氧化环境下则未观察到这种降解产物峰。总的来说,该研究成功地开发了用于药物应用的 HPLC 分析方法。