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通过化学计量校准方法对扑热息痛和盐酸曲马多进行分光光度法定量。

Spectrophotometric quantification of paracetamol and tramadol hydrochloride by chemometric calibration methods.

作者信息

Selimoğlu Faysal, Pinarcik Nermin

机构信息

Department of Biotechnology, Faculty of Science, Necmettin Erbakan University, Konya, Turkey.

出版信息

Turk J Chem. 2023 May 17;47(3):633-645. doi: 10.55730/1300-0527.3566. eCollection 2023.

Abstract

The results of UV spectrophotometric analysis were analysed using partial least squares (PLS) and principal component regression (PCR) techniques to allow simultaneous evaluation of tramadol hydrochloride (TRA) and p-acetaminophen (PAR) in tablets. A calibration set of 16 mixtures, each containing PAR and TRA in various amounts, was created using a 2-full fractional design. The absorbance data set for the calibration set were obtained between 215-280 nm (Δλ = 0.1 nm). Subsequently, the concentration and absorbance sets were used to generate PCR and PLS calibrations. The ratio spectra- first derivative method was devised as a solution to the same problem to compare the outcomes of the chemometric methods used for the same experiment. After the proposed methods were shown to be accurate in the testing of validation samples, they were used in analysing commercial tablet samples. The analytical results showed that PCR and PLS methods can be used as alternative methods to high-performance liquid chromatography (HPLC). Correlation coefficients were determined for the working concentration range of 6-36 g.mL for PAR and 4-22 g.mL for TRA. The limits of detection and quantification were calculated as 0.9104 μg.mL and 3.0347 μg.mL, respectively. The test results of the chemometric analyses and ratio spectra- first derivative method of the commercial tablet form are in agreement with the results of the one-way ANOVA with a confidence interval of 95%. This study shows that the ratio spectra- first derivative method, PCR and PLS models based on spectrophotometric measurements are very useful and straightforward techniques for the quantitative resolution of a two-component pharmaceutical preparation, requiring little sample preparation and little time for analysis.

摘要

采用偏最小二乘法(PLS)和主成分回归(PCR)技术分析紫外分光光度法的结果,以便同时评估片剂中的盐酸曲马多(TRA)和对乙酰氨基酚(PAR)。使用二分之一分式设计创建了一个包含16种混合物的校准集,每种混合物含有不同量的PAR和TRA。校准集的吸光度数据集是在215 - 280 nm(Δλ = 0.1 nm)之间获得的。随后,使用浓度和吸光度集生成PCR和PLS校准曲线。设计了比率光谱 - 一阶导数法来解决相同问题,以比较用于同一实验的化学计量学方法的结果。在所提出的方法在验证样品测试中被证明准确后,将其用于分析市售片剂样品。分析结果表明,PCR和PLS方法可作为高效液相色谱(HPLC)的替代方法。测定了PAR在6 - 36 μg/mL和TRA在4 - 22 μg/mL工作浓度范围内的相关系数。检测限和定量限分别计算为0.9104 μg/mL和3.0347 μg/mL。市售片剂形式的化学计量分析和比率光谱 - 一阶导数法的测试结果与置信区间为95%的单因素方差分析结果一致。本研究表明,基于分光光度测量的比率光谱 - 一阶导数法、PCR和PLS模型是用于定量解析双组分药物制剂的非常有用且直接的技术,所需样品制备少且分析时间短。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5356/10387862/f65779803b0f/turkjchem-47-3-633f1.jpg

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