Green and High Throughput Assay Using 96-Microwell Base to Determine Metformin Hydrochloride in the Tablet Dosage Form.

IF 1.5 4区 化学 Q3 CHEMISTRY, ANALYTICAL
International Journal of Analytical Chemistry Pub Date : 2024-08-23 eCollection Date: 2024-01-01 DOI:10.1155/2024/3374034
Mohammed Alqarni, Atheer Alshehri, Bayan Almalki, Refah Althumali, Maram Alghamdi, Rawan Alqahtani, Safia G Alotibi, Ali Alqarni, Adel H Awad, Ibrahim A Naguib
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Abstract

Metformin (MET) is an oral antidiabetic drug widely used as the primary treatment for type 2 diabetes mellitus (T2DM). While various spectrophotometric assays exist for determining MET in pharmaceutical formulations, they often have limited throughput for quality control purposes. This study describes the validation of a 96-microwell plate spectrophotometer method using charge-transfer complexes (CTCs) with chloranilic acid (CLA) and 2,3-dichloro-5,6-dicyano-1,4-benzoquinone (DDQ) for the quality control and detected of MET. This reaction was carried out in 96-microwell plates, and the absorbance of the colored complexes of CLA and DDQ were measured at 530 nm and 460 nm, respectively, using an absorbance microplate reader. This study aims to identify and quantify the use of a 96-microwell plate spectrophotometer analytical technique for assessing complicated formulations. The method was successfully used for the quantification of MET in the tablet dosage form. The results showed good correlation coefficients (0.996 and 0.997) with CLA and DDQ, respectively. The present method showed high precision with RSD % not exceeding 2.17%. The accuracy of the method was obtained by recovery percentage, with percentage values less than ±5%. The Analytical Greenness Metric (AGREE) was used to evaluate greenness of the assays. The result show that the microwell assay method is greenness and suitable for handling large samples on a daily used with high throughput analysis. The use of the 96-microwell-plate method is superior to the existing method in terms of simplicity of the procedure, the low economic cost, and its consumption of low amounts of reagents and organic ethanol solvent, making it an environmentally friendly method. Therefore, these advantages make them suitable and rapid alternatives method to current methods for routine metformin analysis in quality control laboratories.

使用 96 微孔基质的绿色高通量测定法测定片剂中的盐酸二甲双胍。
二甲双胍(MET)是一种口服抗糖尿病药物,被广泛用作 2 型糖尿病(T2DM)的主要治疗药物。虽然有多种分光光度法可用于测定药物制剂中的二甲双胍,但它们在质量控制方面的通量往往有限。本研究介绍了一种 96 微孔板分光光度计方法的验证,该方法使用氯苯胺酸(CLA)和 2,3-二氯-5,6-二氰基-1,4-苯醌(DDQ)的电荷转移络合物(CTC)来进行 MET 的质量控制和检测。该反应在 96 微孔板中进行,使用吸光度微孔板阅读器分别在 530 纳米和 460 纳米处测量 CLA 和 DDQ 有色复合物的吸光度。本研究旨在确定和量化使用 96 微孔板分光光度计分析技术评估复杂配方的方法。该方法成功用于片剂中 MET 的定量分析。结果表明,该方法与 CLA 和 DDQ 的相关系数分别为 0.996 和 0.997。该方法的精密度较高,RSD % 不超过 2.17%。该方法的准确度由回收率决定,回收率小于±5%。分析绿色度指标(AGREE)用于评价检测的绿色度。结果表明,微孔检测法绿色环保,适用于日常处理大量样品的高通量分析。使用 96 微孔板检测法比现有的检测方法具有操作简单、经济成本低、试剂和有机乙醇溶剂消耗量少等优点,是一种环境友好型检测方法。因此,这些优点使其成为质量控制实验室常规二甲双胍分析方法的合适而快速的替代方法。
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来源期刊
CiteScore
3.10
自引率
5.60%
发文量
117
期刊介绍: International Journal of Analytical Chemistry publishes original research articles that report new experimental results and methods, especially in relation to important analytes, difficult matrices, and topical samples. Investigations may be fundamental, or else related to specific applications; examples being biological, environmental and food testing, and analysis in chemical synthesis and materials processing. As well as original research, the International Journal of Analytical 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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