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Investigating Advanced Approaches Based on Iso-Absorptivity Coefficient in Unresolved Spectral Signals of Binary Mixtures

机译:基于二元混合物的未解决光谱信号中的ISO吸收率系数研究了高级方法

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Several spectrophotometric approaches utilize different functions of the iso-absorptivity coefficient in zero-order absorption signals and its manipulated spectra. This work introduced an investigation concerning the efficiency power of recent methods based on iso-absorptivity coefficient in different spectral signals. These methods were as follows: absorptivity centering method (a-Centering), absorbance subtraction method (AS), amplitude modulation method (AM,) and amplitude summation method (A-Sum). These methods were applied to determine the binary mixture of ofloxacin (OFX) and dexamethasone (DXM). Linearity of the proposed methods was investigated in the range of 1.0–10.0?μg/ml for both drugs. The proposed methods were validated as per ICH guidelines and were successfully applied for the simultaneous determination of OFX and DXM in their pharmaceutical preparation without interference from additives. Statistical analysis of the results obtained by the proposed spectrophotometric methods compared with a reported method revealed no significant difference between the proposed and reported methods, confirming accuracy and precision at 95% confidence limit.
机译:几种分光光度方法利用零阶吸收信号和其操纵光谱中的异吸收系数的不同功能。这项工作介绍了关于基于不同光谱信号中的ISO吸收系数的最近方法效率力的研究。这些方法如下:吸收性定心方法(以中心),吸光度减法法(AS),幅度调制方法(AM,)和幅度求和方法(A-SUM)。施用这些方法以确定氧氟沙星(OFX)和地塞米松(DXM)的二元混合物。研究了所提出的方法的线性,在两种药物的1.0-10.0Ω·μg/ ml的范围内。所提出的方法根据ICH指导验证,并成功地应用于同时测定其药物制剂中的OFX和DXM,而不会从添加剂中干扰干扰。通过所提出的分光光度法获得的结果与报告的方法相比,在提出的方法和报告的方法之间没有显着差异,确认在95%的置信范围内的准确性和精度之间没有显着差异。

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