首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Simultaneous spectrophotometric determination of compounds having relatively disparate absorbance and concentration ranges; application to antidiabetic formulation of linagliptin and metformin
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Simultaneous spectrophotometric determination of compounds having relatively disparate absorbance and concentration ranges; application to antidiabetic formulation of linagliptin and metformin

机译:同时分光光度法测定具有相对不同的吸光度和浓度范围的化合物; Linagliptin和二甲双胍的抗糖尿病制剂的应用

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The limited linear range of UV–Visible spectrophotometry may be insufficient to occupy multiple components with wide variations in their concentrations or absorptivities that will hinder the simultaneous spectrophotometric determination and may require spiking or measurements in subsequent dilution steps. The current work introduces the absorptivity target concentration (ATC) values, a simple way for the proper choice of the working spectral region to execute accurate and linear spectrophotometric measurements. Simultaneous spectrophotometric determination of linagliptin (LNG) and metformin (MET) that are present in a ratio of 1:400 was carried out using traditional spectrophotometric techniques such as third derivative and derivative ratio as well as recently developed techniques such as ratio difference and factorized dual wavelength. The proposed methods were able to determine MET in the concentration range of 50–1200?μg?mL?1. On the other hand, LNG was successfully determined from its zero-order absorption UV-spectrum at λmax(296?nm) in the concentration range 2.5–25?μg?mL?1. The mentioned methods were successfully applied for the determination of the LNG and MET in their combined dosage form. The methods were validated according to the ICH guidelines. The proposed ATC value can be employed as a novel concept for the proper choice of the working spectral region where spectrophotometric measurements can be deployed accurately and precisely.
机译:UV可见分光光度法的有限线性范围可能不足以占据其浓度或吸收性的宽变化的多种组分,这将阻碍同时分光光度法测定,并且可能需要在随后的稀释步骤中进行尖峰或测量。目前的工作引入了吸收性目标浓度(ATC)值,这是正确选择工作光谱区域的简单方法,以执行准确和线性分光光度测量。使用传统的分光光度和衍生物比的比例为1:400的比例的LINAGLIPTIN(LNG)和二甲双胍(MET)的同时分光光度法测定,如第三衍生物和衍生比以及最近的差异和分解双重的技术波长。所提出的方法能够在50-1200Ω×mlα1的浓度范围内确定相遇。另一方面,在浓度范围为2.5-25Ω×mlβ1的λmax(296Ωnm)的零阶吸收紫外光谱中成功地确定了LNG。提出的方法成功地应用于测定液化液晶并以其组合的剂型达到。这些方法根据ICH指南验证。所提出的ATC值可以作为一种新颖的概念,用于正确选择的工作光谱区域,其中可以精确且精确地部署分光光度测量。

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