Widjaja Effendi, Lim Geok Hong, Chow Pui Shan, Tan Selvi
Institute of Chemical and Engineering Sciences, Agency for Science, Technology and Research (A*STAR), 1 Pesek Road, Jurong Island, Singapore 627833, Singapore.
Eur J Pharm Sci. 2007 Dec;32(4-5):349-56. doi: 10.1016/j.ejps.2007.09.002. Epub 2007 Sep 14.
In this paper, the use of multivariate data analysis approach to investigate the kinetics of solid-state reaction monitored via FT-IR thermal microscopy is discussed. The solid-state degradation of enalapril maleate was monitored non-isothermally at temperature range from 25 to 200 degrees C and isothermally at various temperatures (115, 120, 125, 130, and 135 degrees C) for a few hours. The collected FT-IR spectra were subjected to self-modeling curve resolution (SMCR) in order to elucidate the pure component spectral estimates. Subsequently, the relative contributions from the observed species could be obtained by projecting the pure component spectral estimates onto the collected FT-IR spectra. Accordingly, the conversion factors from enalapril maleate to diketopiperazine were calculated and were fitted to various solid-state reaction models. The activation energy values (E(a)) calculated from seven nucleation models were ranging from 176.4 to 193.9 kJ/mol. This multivariate data analysis approach proves to be an effective tool for analyzing the kinetic spectroscopic data having a high degree of overlap between original compound and its degradation product since the information from the whole spectral range is used.
本文讨论了使用多元数据分析方法来研究通过傅里叶变换红外热显微镜监测的固态反应动力学。在25至200摄氏度的温度范围内对马来酸依那普利的固态降解进行非等温监测,并在不同温度(115、120、125、130和135摄氏度)下等温监测数小时。对收集到的傅里叶变换红外光谱进行自建模曲线分辨(SMCR),以阐明纯组分光谱估计值。随后,通过将纯组分光谱估计值投影到收集到的傅里叶变换红外光谱上,可以获得观察到的物种的相对贡献。据此,计算了从马来酸依那普利到二酮哌嗪的转化因子,并将其拟合到各种固态反应模型中。从七种成核模型计算得到的活化能值(E(a))在176.4至193.9kJ/mol之间。这种多元数据分析方法被证明是一种有效的工具,用于分析原始化合物与其降解产物之间具有高度重叠的动力学光谱数据,因为使用了整个光谱范围的信息。