University Institute of Pharmaceutical Sciences, Panjab University, Chandigarh, India.
School of Pharmaceutical Sciences, Lovely Professional University, Phagwara, India.
Biomed Chromatogr. 2023 Aug;37(8):e5641. doi: 10.1002/bmc.5641. Epub 2023 May 4.
A sensitive, rapid, reproducible, and economical HPLC method is reported for the quantification of raloxifene hydrochloride employing Quality by Design (QbD) principles. Factor screening studies, employing Taguchi design, indicated buffer volume percentage and isocratic flow rate as the critical method parameters (CMPs), which significantly influence the chosen critical analytical attributes, that is, tailing factor and theoretical plate number. Method conditions were subsequently optimized using face-centered cubic design with magnitude of variance inflation factor for assessing multicollinearity among CMPs. Method operable design region (MODR) was earmarked and liquid chromatographic separation optimized using 0.05 M citrate buffer, acetonitrile, and methanol (57:40:3 v/v/v) as ggmobile phase at 0.9 mL min flow rate, λ of 280 nm, and column temperature of 40°C. Validation of the developed analytical method was accomplished as per International Council on Harmonization (ICH) guidelines confirming high levels of linearity, precision, accuracy, robustness, and sensitivity. Application of Monte Carlo simulations enabled the attainment of best plausible chromatographic resolution and corroboration of the demarcated MODR. Establishment and validation of the bioanalytical method using rat plasma samples, along with forced degradation and stability studies, corroborated the aptness of developed HPLC methods for drug quantification in the biological fluids, as well as in bulk and marketed dosage forms.
本文报道了一种灵敏、快速、重现性好且经济的 HPLC 法,用于盐酸雷洛昔芬的定量分析,该方法采用了质量源于设计(QbD)原理。通过 Taguchi 设计进行的因子筛选研究表明,缓冲液体积百分比和等度流速是关键方法参数(CMPs),它们显著影响所选择的关键分析属性,即拖尾因子和理论塔板数。随后,使用方差膨胀因子评估 CMPs 之间的多重共线性,使用立方设计对面心设计进行了方法条件优化。指定了方法可操作设计区域(MODR),并使用 0.05 M 柠檬酸缓冲液、乙腈和甲醇(57:40:3 v/v/v)作为 gg 流动相,在 0.9 mL min 流速、280 nm 波长和 40°C 柱温下优化了液相色谱分离。根据国际协调委员会(ICH)指南对开发的分析方法进行了验证,证实了该方法具有高水平的线性、精密度、准确度、稳健性和灵敏度。通过蒙特卡罗模拟的应用,实现了最佳可能的色谱分辨率,并证实了所划定的 MODR。使用大鼠血浆样品进行了生物分析方法的建立和验证,以及强制降解和稳定性研究,证实了所开发的 HPLC 方法适用于生物体液、原料药和市售制剂中的药物定量。