Department of Pharmaceutical Industry and Management, George Emil Palade University of Medicine, Pharmacy, Science, and Technology of Targu Mures, Gh. Marinescu 38, 540139 Targu Mures, Romania.
Sz-Imfidum Ltd., Lunga nr. 504, 525401 Covasna, Romania.
Molecules. 2022 Dec 17;27(24):9022. doi: 10.3390/molecules27249022.
A high-performance liquid chromatographic method was developed for the simultaneous determination of the related substances-three potential synthesis-related chemical impurities and the distomer-of escitalopram. The separation capacity of seven different polysaccharide-type chiral columns, including three amylose-based (Lux Amylose-1, Lux i-Amylose-1, Lux Amylose-2) and four cellulose-based columns (Lux Cellulose-1, Lux Cellulose-2, Lux Cellulose-3, and Lux Cellulose-4) were screened in the polar organic and reversed-phase modes. Lux Cellulose-1, based on cellulose tris(3,5-dimethylphenylcarbamate) as the chiral selector with an acetonitrile-water mixture containing 0.1% diethylamine was identified as the most promising separation system. Using the "one factor at a time" optimization approach, the effect of column temperature, flow rate, and mobile phase constituents on separation performance was evaluated, and the critical resolution values were determined. A U-shaped retention pattern was obtained when plotting the retention factors of the citalopram enantiomers versus the water content of the binary mobile phases on the Lux Cellulose-1 column. A thermodynamic analysis revealed enthalpy-driven enantioseparation in both the polar organic and reversed-phase modes. For further method optimizations, an L9 orthogonal array table was employed. Using the optimized parameters (Lux Cellulose-1 column with 0.1% (/) diethylamine in water/acetonitrile 55/45 (/); 0.8 mL/min flow rate at 25 °C), baseline separations were achieved between all compounds. Our newly developed HPLC method was validated according to the ICH guidelines and its application was tested with a commercially available pharmaceutical formulation. The method proved to be suitable for routine quality control of related substances and the enantiomeric purity of escitalopram.
建立了一种高效液相色谱法,用于同时测定艾司西酞普兰的有关物质(三种潜在的合成相关化学杂质和对映异构体)。在极性有机和反相模式下,筛选了七种不同多糖型手性柱的分离能力,包括三种直链淀粉基(Lux Amylose-1、Lux i-Amylose-1、Lux Amylose-2)和四种纤维素基柱(Lux Cellulose-1、Lux Cellulose-2、Lux Cellulose-3 和 Lux Cellulose-4)。以纤维素三(3,5-二甲基苯基氨基甲酸酯)为手性选择剂,以乙腈-水混合物(含 0.1%二乙胺)为流动相的 Lux Cellulose-1 柱被确定为最有前途的分离系统。采用“单因素分析法”优化了柱温、流速和流动相组成对分离性能的影响,并确定了临界分辨值。当在 Lux Cellulose-1 柱上绘制 citalopram 对映体的保留因子与二元流动相的含水量之间的关系时,得到了 U 形保留模式。热力学分析表明,在极性有机和反相模式下,均为焓驱动的对映体分离。为了进一步优化方法,采用了 L9 正交数组表。采用优化参数(在水/乙腈 55/45(/)中含有 0.1%(/)二乙胺的 Lux Cellulose-1 柱;25°C 时 0.8 mL/min 的流速),可实现所有化合物的基线分离。根据 ICH 指南对新建立的 HPLC 方法进行了验证,并将其应用于市售药物制剂进行了测试。该方法适用于有关物质的常规质量控制和艾司西酞普兰的对映体纯度。