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布洛芬S-对映体及外消旋混合物结晶速率的压力依赖性

Pressure Dependence of the Crystallization Rate for the S-Enantiomer and a Racemic Mixture of Ibuprofen.

作者信息

Koperwas Kajetan, Tu Wenkang, Affouard Frédéric, Adrjanowicz Karolina, Kaskosz Filip, Paluch Marian

机构信息

Institute of Physics, University of Silesia in Katowice, 75 Pułku Piechoty 1, 41-500 Chorzów, Poland.

Silesian Center for Education and Interdisciplinary Research SMCEBI, 75 Pułku Piechoty 1a, 41-500 Chorzów, Poland.

出版信息

Cryst Growth Des. 2021 Dec 1;21(12):7075-7086. doi: 10.1021/acs.cgd.1c00980. Epub 2021 Oct 27.

Abstract

This paper examines the pressure effect on the crystallization rate of the pharmaceutically active enantiomerically pure S-enantiomer and the racemic mixture of the well-known drug ibuprofen. Performed experimental studies revealed that at ambient pressure -ibuprofen crystallizes faster than the racemic mixture. When the pressure increases, the crystallization rate slows down for both systems, but interestingly it is more apparent in the case of the S-enantiomer. It is found that this experimentally observed trend can be understood based on the predictions of the classical nucleation theory. We suggest that the solid-liquid interfacial free energy is the main reason for the observed variations in - and -ibuprofen's stability behaviors. Employing a special method of computational studies, i.e., the capillary fluctuation method, we show that the increase in pressure affects the solid-liquid interfacial free energy for - and -ibuprofen in an entirely different way. Importantly, the detected differences correspond to the experimentally observed variations in the overall crystallization rates.

摘要

本文研究了压力对具有药物活性的对映体纯S-对映体以及知名药物布洛芬外消旋混合物结晶速率的影响。所进行的实验研究表明,在常压下,布洛芬的结晶速度比外消旋混合物快。当压力增加时,两个体系的结晶速率均减慢,但有趣的是,这种情况在S-对映体中更为明显。研究发现,基于经典成核理论的预测可以理解这一实验观察到的趋势。我们认为,固液界面自由能是观察到的S-布洛芬和外消旋布洛芬稳定性行为变化的主要原因。采用一种特殊的计算研究方法,即毛细管波动法,我们表明压力的增加以完全不同的方式影响S-布洛芬和外消旋布洛芬的固液界面自由能。重要的是,检测到的差异与实验观察到的整体结晶速率变化相对应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f19e/8641391/d41c339f9d33/cg1c00980_0001.jpg

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