同时测定坎地沙坦西莱西酯和氢氯噻嗪二元组合的化学计量学方法。

IF 2.3 3区 化学 Q3 CHEMISTRY, ANALYTICAL
Diyar Salahuddin Ali
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引用次数: 3

摘要

改进和验证了坎地沙坦西莱西地酯和氢氯噻嗪合成混合物中简便、准确、精确和经济高效的化学计量技术。采用h点标准加入法、q -吸收比法和校正吸收光度法同时测定实际制剂中两种药物的含量。提出了一种基于化学h点标准的校正方法。该方法用于解决两种分析物的明显重叠光谱,并提供由样品矩阵引起的比例和常数误差的直接校正。建立了坎地沙坦西拉西地酯和氢氯噻嗪的同时测定方法,采用波长239和283的h点标准加法法。对于选择的两个波长的吸收比,一个是等吸收点,另一个是两者中一个分量的最大值,采用第二种方法吸收比法。在蒸馏水中,坎地沙坦和氢氯噻嗪的等吸收点出现在258 nm处。氢氯噻嗪的λ Max为273 nm,是第二波长。最后,实现了吸光度校正方法。该方法基于吸光度校正方程,并使用蒸馏水作为两种药物检查的溶剂。在NaOH/EtOH溶剂中,坎地沙坦西莱西酯和氢氯噻嗪的吸光度最大值分别为250 nm和340 nm。对于两个波长,坎地沙坦西蕾蒂酯和氢氯噻嗪分别在1 ~ 46 μg/ml和1 ~ 44 μg/ml的浓度范围内呈线性关系。q -吸收比法在1-46 μg/ml (273 nm)和1-29 μg/ml(氢氯噻嗪)、1-46 μg/ml (258 nm)和1-44 μg/ml(氢氯噻嗪)浓度范围内呈线性关系。对于氢氯噻嗪,在250和340 nm波长范围内1 ~ 46 μg/ml,在250 nm波长范围内1 ~ 44 μg/ml,校正吸光度法均具有良好的线性关系。分析的结果在统计上和经验上得到了恢复研究的支持。两种药物的加样回收率均在96 ~ 102%之间。氢氯噻嗪的检测下限为0.46 ~ 0.94 μg/mL,坎地沙坦的检测下限为1.26 ~ 2.40 μg/mL。然后将该方法用于定量坎地沙坦西莱西地酯和氢氯噻嗪片剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Chemometric Methods for Simultaneous Determination of Candesartan Cilexetil and Hydrochlorothiazide in Binary Combinations.

Chemometric Methods for Simultaneous Determination of Candesartan Cilexetil and Hydrochlorothiazide in Binary Combinations.

Chemometric Methods for Simultaneous Determination of Candesartan Cilexetil and Hydrochlorothiazide in Binary Combinations.

Chemometric Methods for Simultaneous Determination of Candesartan Cilexetil and Hydrochlorothiazide in Binary Combinations.

Simple, accurate, precise, and cost-effective chemometric techniques for the measurement of candesartan cilexetil and hydrochlorothiazide in synthetic mixtures were improved and validated. H-point standard addition, Q-absorption ratio, and correction absorbance spectrophotometric techniques were utilized for the simultaneous determination of both medicines in real pharmaceutical formulations. A new calibration approach was implemented based on chemical H-point standards. This approach was developed to resolve significantly overlapping spectra of two analytes and provide direct correction of both proportional and constant errors caused by the matrix of the sample. The first method of simultaneous determination of candesartan cilexetil and hydrochlorothiazide was carried out using the H-point standard addition method at wavelengths 239 and 283. For the ratio of the absorption at two selected wavelengths, one of which is the isoabsorptive point and the other being the maximum of one of the two components, the second method absorption ratio method was utilized. In distilled water, the isoabsorptive point of candesartan cilexetil and hydrochlorothiazide occurs at 258 nm. λ max of hydrochlorothiazide is 273 nm, which is the second wavelength used. Lastly, the absorbance correction method was implemented. This approach is based on absorbance correction equations and uses distilled water as the solvent for the examination of both medicines. In NaOH/EtOH solvent, the absorbance maxima of candesartan cilexetil and hydrochlorothiazide are 250 nm and 340 nm, respectively. For both wavelengths, candesartan cilexetil and hydrochlorothiazide exhibited linearity over a concentration range of 1-46 μg/ml and 1-44 μg/ml, respectively, for H-point standard addition. The Q-absorption ratio approach provides linearity over the concentration ranges of 1-46 μg/ml at 273 nm for candesartan cilexetil and 1-29 μg/ml for hydrochlorothiazide, 1-46 μg/ml at 258 nm for candesartan cilexetil, and 1-44 μg/ml for hydrochlorothiazide. For hydrochlorothiazide, the linearity for the correction absorbance method was obtained throughout a concentration range of 1-46 μg/ml at wavelengths 250 and 340 nm and 1-44 μg/ml at wavelength 250 nm. The results of the analysis have been statistically and empirically supported by recovery studies. All methods yielded recoveries in the range of 96 -102% for both medications. The LOD ranged from 0.46 -0.94 μg/mL for hydrochlorothiazide and from 1.26 -2.40 μg/mL for candesartan cilexetil. The approaches were then used to quantify candesartan cilexetil and hydrochlorothiazide in pharmaceutical tablets.

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来源期刊
Journal of Analytical Methods in Chemistry
Journal of Analytical Methods in Chemistry CHEMISTRY, ANALYTICAL-ENGINEERING, CIVIL
CiteScore
4.80
自引率
3.80%
发文量
79
审稿时长
6-12 weeks
期刊介绍: Journal of Analytical Methods in Chemistry publishes papers reporting methods and instrumentation for chemical analysis, and their application to real-world problems. Articles may be either practical or theoretical. Subject areas include (but are by no means limited to): Separation Spectroscopy Mass spectrometry Chromatography Analytical Sample Preparation Electrochemical analysis Hyphenated techniques Data processing As well as original research, Journal of Analytical Methods in Chemistry also publishes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.
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