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坎地沙坦纯化合物及药物制剂的固态稳定性和降解动力学

Solid State Stability and Kinetics of Degradation for Candesartan-Pure Compound and Pharmaceutical Formulation.

作者信息

Buda Valentina, Baul Bianca, Andor Minodora, Man Dana Emilia, Ledeţi Adriana, Vlase Gabriela, Vlase Titus, Danciu Corina, Matusz Petru, Peter Francisc, Ledeţi Ionuţ

机构信息

Faculty of Pharmacy, "Victor Babeş" University of Medicine and Pharmacy, 2 Eftimie Murgu Square, 300041 Timisoara, Romania.

Faculty of Industrial Chemistry and Environmental Engineering, Politehnica University of Timișoara, Vasile Parvan Street 6, 300223 Timisoara, Romania.

出版信息

Pharmaceutics. 2020 Jan 21;12(2):86. doi: 10.3390/pharmaceutics12020086.

Abstract

The aim of this work was to assess the impact of an excipient in a pharmaceutical formulation containing candesartan cilexetil over the decomposition of the active pharmaceutical ingredient and to comparatively investigate the kinetics of degradation during thermolysis in an oxidative atmosphere under controlled thermal stress. To achieve this, the samples were chosen as follows: pure candesartan cilexetil and a commercial tablet of 32 mg strength. As a first investigational tool, Universal attenuated total reflection Fourier transform infrared (UATR-FTIR) spectroscopy was chosen in order to confirm the purity and identity of the samples, as well as to check if any interactions took place in the tablet between candesartan cilexetil and excipients under ambient conditions. Later on, samples were investigated by thermal analysis, and the elucidation of the decomposition mechanism was achieved solely after performing an in-depth kinetic study, namely the use of the modified non-parametric kinetics (NPK) method, since other kinetic methods (American Society for Testing and Materials-ASTM E698, Friedman and Flynn-Wall-Ozawa) led to inadvertencies. The NPK method suggested that candesartan cilexetil and the tablet were degraded by the contribution of two steps, the main being represented by chemical degradation and the secondary being a physical transformation. The excipients chosen in the formulation seemed to have a stabilizing effect on the decomposition of the candesartan cilexetil that was incorporated into the tablet, relative to pure active pharmaceutical ingredient (API), since the apparent activation energy for the decomposition of the tablet was 192.5 kJ/mol, in comparison to 154.5 kJ/mol for the pure API.

摘要

这项工作的目的是评估一种辅料对含有坎地沙坦酯的药物制剂中活性药物成分分解的影响,并在可控热应力下的氧化气氛中,比较研究热解过程中的降解动力学。为实现这一目的,样品选择如下:纯坎地沙坦酯和一片32毫克强度的市售片剂。作为首个研究工具,选择通用衰减全反射傅里叶变换红外光谱(UATR-FTIR)来确认样品的纯度和特性,以及检查在环境条件下,坎地沙坦酯与片剂中的辅料之间是否发生任何相互作用。随后,通过热分析对样品进行研究,仅在进行深入的动力学研究(即使用改进的非参数动力学(NPK)方法)后,才阐明了分解机制,因为其他动力学方法(美国材料与试验协会标准ASTM E698、弗里德曼法以及弗林-沃尔-小泽法)会导致误差。NPK方法表明,坎地沙坦酯和该片剂通过两个步骤降解,主要步骤为化学降解,次要步骤为物理转变。相对于纯活性药物成分(API),制剂中选择的辅料似乎对片剂中所含坎地沙坦酯的分解具有稳定作用,因为该片剂分解的表观活化能为192.5千焦/摩尔,而纯API的表观活化能为154.5千焦/摩尔。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/954f/7076474/7d19760fe0af/pharmaceutics-12-00086-g001.jpg

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