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采用多元曲线分辨法结合动力学和酸碱滴定 UV 数据研究氨氯吡咪的 pH 依赖性光降解。

A study of pH-dependent photodegradation of amiloride by a multivariate curve resolution approach to combined kinetic and acid-base titration UV data.

机构信息

Department of Pharmaceutical Sciences, University of Calabria, Via P. Bucci, 87036 Rende, Italy.

出版信息

Analyst. 2012 Nov 21;137(22):5428-35. doi: 10.1039/c2an35799b. Epub 2012 Oct 1.

DOI:10.1039/c2an35799b
PMID:23024976
Abstract

Amiloride photostability at different pH values was studied in depth by applying Multivariate Curve Resolution Alternating Least Squares (MCR-ALS) to the UV spectrophotometric data from drug solutions exposed to stressing irradiation. Resolution of all degradation photoproducts was possible by simultaneous spectrophotometric analysis of kinetic photodegradation and acid-base titration experiments. Amiloride photodegradation showed to be strongly dependent on pH. Two hard modelling constraints were sequentially used in MCR-ALS for the unambiguous resolution of all the species involved in the photodegradation process. An amiloride acid-base system was defined by using the equilibrium constraint, and the photodegradation pathway was modelled taking into account the kinetic constraint. The simultaneous analysis of photodegradation and titration experiments revealed the presence of eight different species, which were differently distributed according to pH and time. Concentration profiles of all the species as well as their pure spectra were resolved and kinetic rate constants were estimated. The values of rate constants changed with pH and under alkaline conditions the degradation pathway and photoproducts also changed. These results were compared to those obtained by LC-MS analysis from drug photodegradation experiments. MS analysis allowed the identification of up to five species and showed the simultaneous presence of more than one acid-base equilibrium.

摘要

采用多变量曲线分辨交替最小二乘法(MCR-ALS)对药物溶液在应激照射下的紫外分光光度数据进行深入研究,考察了不同 pH 值下阿米洛利的光不稳定性。通过同时进行动力学光降解和酸碱滴定实验的分光光度分析,可以解析所有降解光产物。阿米洛利的光降解强烈依赖于 pH 值。在 MCR-ALS 中,顺序使用了两个严格的建模约束条件,以明确解析光降解过程中涉及的所有物种。通过使用平衡约束条件定义了阿米洛利酸碱体系,并考虑动力学约束条件建立了光降解途径模型。光降解和滴定实验的同时分析揭示了存在八种不同的物质,它们根据 pH 值和时间的不同而有不同的分布。解析并估计了所有物质的浓度曲线和它们的纯光谱以及动力学速率常数。速率常数随 pH 值而变化,在碱性条件下,降解途径和光产物也发生了变化。这些结果与药物光降解实验的 LC-MS 分析结果进行了比较。MS 分析可以鉴定多达五种物质,并显示出同时存在多个酸碱平衡。

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