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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >Continuous wavelet transforms for the simultaneous quantitative analysis and dissolution testing of lamivudine-zidovudine tablets
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Continuous wavelet transforms for the simultaneous quantitative analysis and dissolution testing of lamivudine-zidovudine tablets

机译:连续小波变换用于拉米夫定-齐多夫定片的同时定量分析和溶出度测试

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摘要

Dissolution testing has a very vital importance for a quality control test and prediction of the in vivo behavior of the oral dosage formulation. This requires the use of a powerful analytical method to get reliable, accurate and precise results for the dissolution experiments. In this context, new signal processing approaches, continuous wavelet transforms (CWTs) were improved for the simultaneous quantitative estimation and dissolution testing of lamivudine (LAM) and zidovudine (ZID) in a tablet dosage form. The CWT approaches are based on the application of the continuous wavelet functions to the absorption spectra-data vectors of LAM and ZID in the wavelet domain. After applying many wavelet functions, the families consisting of Mexican hat wavelet with the scaling factor a=256, Symlets wavelet with the scaling factor a=512 and the order of 5 and Daubechies wavelet at the scale factor a=450 and the order of 10 were found to be suitable for the quantitative determination of the mentioned drugs. These wavelet applications were named as mexh-CWT, sym5-CWT and db10-CWT methods. Calibration graphs for LAM and ZID in the working range of 2.0-50.0μg/mL and 2.0-60.0μg/mL were obtained measuring the mexh-CWT, sym5-CWT and db10-CWT amplitudes at the wavelength points corresponding to zero crossing points. The validity and applicability of the improved mexh-CWT, sym5-CWT and db10-CWT approaches was carried out by the analysis of the synthetic mixtures containing the analyzed drugs. Simultaneous determination of LAM and ZID in tablets was accomplished by the proposed CWT methods and their dissolution profiles were graphically explored.
机译:溶出度测试对于质量控制测试和预测口服剂型的体内行为至关重要。这就需要使用功能强大的分析方法来获得用于溶出度实验的可靠,准确和精确的结果。在这种情况下,改进了新的信号处理方法,连续小波变换(CWT),用于片剂剂型中拉米夫定(LAM)和齐多夫定(ZID)的同时定量估计和溶出度测试。 CWT方法基于将连续小波函数应用于小波域中LAM和ZID的吸收光谱数据载体。在应用了许多小波函数之后,由比例因子为a = 256的墨西哥帽小波,比例因子为a = 512和5的Symlet小波以及比例因子为a = 450和10的Daubechies小波组成的族。被发现适合用于上述药物的定量测定。这些小波应用程序被称为mexh-CWT,sym5-CWT和db10-CWT方法。获得了在工作范围为2.0-50.0μg/ mL和2.0-60.0μg/ mL的范围内的LAM和ZID的校准图,在对应于零交叉点的波长点处测量了mexh-CWT,sym5-CWT和db10-CWT振幅。改进的mexh-CWT,sym5-CWT和db10-CWT方法的有效性和适用性是通过分析包含所分析药物的合成混合物来进行的。通过建议的CWT方法可同时测定片剂中的LAM和ZID,并以图形方式探索了它们的溶出曲线。

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