Kanthiah Selvakumar, Kannappan Valliappan
Department of Pharmacy, Faculty of Engineering and Technology, Annamalai University, Annamalai Nagar, Tamil Nadu, India.
Biomed Chromatogr. 2017 Aug;31(8). doi: 10.1002/bmc.3932. Epub 2017 Feb 5.
This study describes a specific, precise, sensitive and accurate method for simultaneous determination of hydroxyzine, loratadine, terfenadine, rupatadine and their main active metabolites cetirizine, desloratadine and fexofenadine, in serum and urine using meclizine as an internal standard. Solid-phase extraction method for sample clean-up and preconcentration of analytes was carried out using Phenomenex Strata-X-C and Strata X polymeric cartridges. Chromatographic analysis was performed on a Phenomenex cyano (150 × 4.6 mm i.d., 5 μm) analytical column. A D-optimal mixture design methodology was used to evaluate the effect of changes in mobile phase compositions on dependent variables and optimization of the response of interest. The mixture design experiments were performed and results were analyzed. The region of ideal mobile phase composition consisting of acetonitrile-methanol-ammonium acetate buffer (40 mm; pH 3.8 adjusted with acetic acid): 18:36:46% v/v/v was identified by a graphical optimization technique using an overlay plot. While using this optimized condition all analytes were baseline resolved in <10 min. Solvent mixtures were delivered at 1.5 mL/min flow rate and analytes peaks were detected at 222 nm. The proposed bioanalytical method was validated according to US Food and Drug Administration guidelines. The proposed method was sensitive with detection limits of 0.06-0.15 μg/mL in serum and urine samples. Relative standard deviation for inter- and intra-day precision data was found to be <7%. The proposed method may find application in the determination of selected antihistaminic drugs in biological fluids.
本研究描述了一种使用美克洛嗪作为内标,同时测定血清和尿液中羟嗪、氯雷他定、特非那定、卢帕他定及其主要活性代谢物西替利嗪、地氯雷他定和非索非那定的特异、精确、灵敏且准确的方法。采用Phenomenex Strata-X-C和Strata X聚合物小柱进行固相萃取法对样品进行净化和分析物预浓缩。在Phenomenex氰基柱(150×4.6 mm内径,5μm)上进行色谱分析。采用D-最优混合设计方法评估流动相组成变化对因变量的影响以及对感兴趣响应的优化。进行了混合设计实验并分析了结果。通过使用重叠图的图形优化技术确定了由乙腈-甲醇-醋酸铵缓冲液(40 mM;用乙酸调节pH至3.8):18:36:46% v/v/v组成的理想流动相区域。在使用此优化条件时,所有分析物在<10分钟内实现基线分离。以1.5 mL/min的流速输送溶剂混合物,并在222 nm处检测分析物峰。所提出的生物分析方法根据美国食品药品监督管理局的指南进行了验证。该方法灵敏,血清和尿液样品中的检测限为0.06 - 0.15μg/mL。日间和日内精密度数据的相对标准偏差<7%。所提出的方法可能在生物流体中选定抗组胺药物的测定中得到应用。