Department of Chemistry, Faculty of Science, Ain Shams University, Cairo 11566, Egypt.
Pharmaceutical Chemistry Department, Drug Exploration & Development Chair (DEDC), College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia.
Molecules. 2020 Jul 31;25(15):3512. doi: 10.3390/molecules25153512.
Herein, a novel validated potentiometric method is presented for the first time for citicoline determination. The method is based on measuring the potential using new constructed citicoline electrodes. The electrodes are based on the use of citicolinium/phosphomolybdate [Cit][PM] (sensor I) and citicolinium/tetraphenylborate [Cit][TPB] (sensor II) ion association complexes. These sensory materials were dispersed in plasticized polyvinyl chloride (PVC) polymeric membranes. The sensors revealed a Nernstian response with the slopes 55.9 ± 1.8( = 0.9994) and 51.8 ± 0.9 ( = 0.9991) mV/decade over a linearity range of 6.3 × 10-1.0 × 10 and 1.0 × 10-1.0 × 10 M and detection limits of 3.16 × 10 and 7.1 × 10 M for sensors I and II, respectively. To ensure the existence of monovalent citicoline, all measurements were performed in 50 mM acetate buffer at pH 3.5. All presented electrodes showed good performance characteristics such as rapid response, good selectivity, high potential-stability and long life-span. Method verification and validation in terms of response linearity, quantification limit, accuracy, bias, trueness, robustness, within-day variability and between-days variability were evaluated. The method was introduced for citicoline determination in different pharmaceutical formulations and compared with the standard high performance liquid chromatography (HPLC) method.
在此,首次提出了一种新的、经过验证的用于检测胞磷胆碱的电位测定方法。该方法基于使用新构建的胞磷胆碱电极测量电势。这些电极基于使用胞磷胆碱/磷钼酸盐[Cit][PM](传感器 I)和胞磷胆碱/四苯硼酸盐[Cit][TPB](传感器 II)离子缔合配合物。这些传感材料分散在增塑聚氯乙烯(PVC)聚合物膜中。传感器呈现出 Nernstian 响应,斜率分别为 55.9 ± 1.8(=0.9994)和 51.8 ± 0.9(=0.9991)mV/decade,线性范围分别为 6.3×10-1.0×10和 1.0×10-1.0×10 M,检测限分别为 3.16×10和 7.1×10 M。为了确保存在单价胞磷胆碱,所有测量均在 pH 3.5 的 50 mM 乙酸盐缓冲液中进行。所有呈现的电极都表现出良好的性能特征,例如快速响应、良好的选择性、高电位稳定性和长寿命。从响应线性、定量限、准确性、偏差、准确度、稳健性、日内变异性和日间变异性等方面评估了方法验证和验证。该方法被引入用于不同药物制剂中胞磷胆碱的测定,并与标准高效液相色谱(HPLC)方法进行了比较。