Abualhasan Murad, Odeh Nihaya Wasif, Younis Ghadeer Naser, Zeidan Oyoun Fadel
Department of Pharmacy, Faculty of Medicine and Health Sciences, An-Najah National University, P.O. Box 7, Nablus, State of Palestine.
Int J Anal Chem. 2020 Jan 31;2020:5672183. doi: 10.1155/2020/5672183. eCollection 2020.
Sodium valproate has anticonvulsant activity and is structurally different to conventional antiepileptic drugs. The problem with valproic acid is the lack of a chromophore, which means that gas chromatography is the sole assay methodology. The introduction of benzoyl and phenyl groups to the molecule is a useful derivatisation, which enables the creation of detectable chromophores for HPLC analysis for pharmaceutical dosages as well as biological systems. . Sodium valproate was derivatised by the addition of a chromophore to its structure by introducing a methyl benzoyl or a phenyl group. Trichlorophenol and 2-hydroxyacetophenone were used to introduce phenyl and benzoyl groups to valproic acid, respectively. The reaction used was estrification reaction using coupling agents. An analytical method was then developed and validated using reverse-phase HPLC. The method was validated for parameters like linearity, range, accuracy precision, and robustness.
The developed method was easy and feasible and can be applied to both routine analysis and bioanalysis. The method was very sensitive and could quantify valproic acid at a very low concentration of 0.75 × 10 mg/ml. The developed method was found to be linear ( = 0.997), accurate, precise, and robust.
The proposed chemical derivatisation and the developed analytical method are novel. The developed analytical procedure is the first of its kind; it is easy and feasible and can be used to quantify and detect sodium valproate at very low concentrations compared to other available methods in the literature.
丙戊酸钠具有抗惊厥活性,其结构与传统抗癫痫药物不同。丙戊酸的问题在于缺乏发色团,这意味着气相色谱法是唯一的检测方法。在分子中引入苯甲酰基和苯基是一种有用的衍生化方法,可用于创建可检测的发色团,用于药物剂量以及生物系统的高效液相色谱分析。通过引入甲基苯甲酰基或苯基在丙戊酸钠的结构中添加发色团进行衍生化。分别使用三氯苯酚和2-羟基苯乙酮将苯基和苯甲酰基引入丙戊酸。所使用的反应是使用偶联剂的酯化反应。然后开发了一种分析方法并使用反相高效液相色谱法进行了验证。该方法针对线性、范围、准确度、精密度和稳健性等参数进行了验证。
所开发的方法简便可行,可应用于常规分析和生物分析。该方法非常灵敏,能够在0.75×10mg/ml的极低浓度下定量丙戊酸。所开发的方法具有线性(r = 0.997)、准确、精密和稳健的特点。
所提出的化学衍生化方法和所开发的分析方法是新颖的。所开发的分析程序是同类方法中的首创;它简便可行,与文献中其他现有方法相比,可用于在极低浓度下定量和检测丙戊酸钠。