Darwish Ibrahim A, Al-Shehri Mona M, El-Gendy Manal A
Department of Pharmaceutical Chemistry, College of Pharmacy, King Saud University, P,O, Box 2457, Riyadh 11451, Saudi Arabia.
Chem Cent J. 2012 Feb 3;6(1):11. doi: 10.1186/1752-153X-6-11.
This study represents the first report on the development of a novel spectrophotometric method for determination of cinacalcet hydrochloride (CIN) in its tablet dosage forms. Studies were carried out to investigate the reaction between CIN and 1,2-naphthoquinone-4-sulphonate (NQS) reagent. In alkaline medium (pH 8.5), an orange red-colored product exhibiting maximum absorption peak (λmax) at 490 nm was produced. The stoichiometry and kinetic of the reaction were investigated and the reaction mechanism was postulated. This color-developing reaction was employed in the development of a simple and rapid visible-spectrophotometric method for determination of CIN in its tablets. Under the optimized reaction conditions, Beer's law correlating the absorbance with CIN concentration was obeyed in the range of 3 - 100 μg/ml with good correlation coefficient (0.9993). The molar absorptivity (ε) was 4.2 × 105 l/mol/cm. The limits of detection and quantification were 1.9 and 5.7 μg/ml, respectively. The precision of the method was satisfactory; the values of relative standard deviations (RSD) did not exceed 2%. No interference was observed from the excipients that are present in the tablets. The proposed method was applied successfully for the determination of CIN in its pharmaceutical tablets with good accuracy and precisions; the label claim percentage was 100.80 - 102.23 ± 1.27 - 1.62%. The results were compared favorably with those of a reference pre-validated method. The method is practical and valuable in terms of its routine application in quality control laboratories.
本研究首次报道了一种用于测定盐酸西那卡塞片剂剂型中盐酸西那卡塞(CIN)的新型分光光度法的开发。开展了研究以考察CIN与1,2 - 萘醌 - 4 - 磺酸盐(NQS)试剂之间的反应。在碱性介质(pH 8.5)中,生成了一种在490 nm处呈现最大吸收峰(λmax)的橙红色产物。研究了该反应的化学计量关系和动力学,并推测了反应机理。这种显色反应被用于开发一种简单快速的可见分光光度法,用于测定片剂中的CIN。在优化的反应条件下,吸光度与CIN浓度在3 - 100 μg/ml范围内符合比尔定律,相关系数良好(0.9993)。摩尔吸光系数(ε)为4.2×105 l/mol/cm。检测限和定量限分别为1.9和5.7 μg/ml。该方法的精密度令人满意;相对标准偏差(RSD)值不超过2%。未观察到片剂中辅料的干扰。所提出的方法成功应用于药物片剂中CIN的测定,具有良好的准确度和精密度;标示量百分率为100.80 - 102.23 ± 1.27 - 1.62%。结果与参考预验证方法的结果相比具有优势。该方法在质量控制实验室的常规应用方面具有实用性和价值。