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首页> 外文期刊>Journal of Analytical Methods in Chemistry >Simultaneous Determination of Drugs Affecting Central Nervous System (CNS) in Bulk and Pharmaceutical Formulations Using Multivariate Curve Resolution-Alternating Least Squares (MCR-ALS)
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Simultaneous Determination of Drugs Affecting Central Nervous System (CNS) in Bulk and Pharmaceutical Formulations Using Multivariate Curve Resolution-Alternating Least Squares (MCR-ALS)

机译:使用多曲线曲线分辨率 - 交替的最小二乘(MCR-ALS)同时测定影响中枢神经系统(CNS)的药物和药物制剂中的药物

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The quality of medications is important to maintain the overall health care of patients. This study aims to develop and validate a spectrophotometric method using multivariate curve resolution-alternating least squares (MCR-ALS) with correlation constraint for simultaneous resolution and quantification of selected drugs affecting the central nervous system (imipramine, carbamazepine, chlorpromazine, haloperidol, and phenytoin) in different pharmaceutical dosage forms. Figures of merit such as root-mean-square error of prediction, bias, standard error of prediction, and relative error of prediction for the developed method were calculated. High values of correlation coefficients ranged between 0.9993 and 0.9998 reflected high predictive ability of the developed method. The results are linear in the concentration range of 0.3–5?μg/mL for carbamazepine, 0.3–15?μg/mL for chlorpromazine, 0.5–10?μg/mL for haloperidol, 0.5–10?μg/mL for imipramine, and 3–20?μg/mL for phenytoin. The optimized method was successfully applied for the analysis of the studied drugs in their pharmaceutical products without any separation step. The optimized method was also compared with a reported HPLC method using Student’s t test and F ratio at 95% confidence level, and the results showed no significant difference regarding accuracy and precision. The proposed chemometric method is fast, reliable, and cost-effective and can be used as an eco-friendly alternative to chromatographic techniques for the analysis of the studied drugs in commercial pharmaceutical products.
机译:药物质量对于维持患者的整体医疗保健是重要的。本研究旨在使用多元曲线分辨率 - 交替的最小二乘(MCR-ALS)与影响中枢神经系统的选定药物的同时分辨率和定量的相关约束进行分光光度法(MCR-ALS)(含氨碱,卡巴马嗪,氯丙嗪,卤代丙酮和苯妥芬)以不同的药物剂型。计算诸如预测,预测,预测标准误差的根均方误差等优点,以及开发方法预测的相对误差。相关系数的高值范围在0.9993和0.9998之间,反映了开发方法的高预测能力。结果在浓度范围内为0.3-5Ω·μg/ ml的线性,对于氯丙嗪0.3-15Ω·μg/ ml,对于氟哌啶醇,0.5-10Ω·μg/ ml,脂氧化的0.5-10Ω·μg/ ml, 3-20?μg/ ml用于苯妥林。优化的方法成功地应用于在其药物产品中的研究分析而没有任何分离步骤。还将优化方法与使用学生的T检验的报告的HPLC方法进行比较,并且F比率在95%的置信水平下,结果表明,关于精度和精度没有显着差异。所提出的化学计量方法快速,可靠,并且具有成本效益,可用作经过生态友好的替代品,用于分析商业药品中研究的药物的色谱技术。

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