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盐-聚合物双水相体系萃取镇痛药的液-液相平衡测定与计算研究。

Liquid-liquid equilibrium measurements and computational study of salt-polymer aqueous two phase system for extraction of analgesic drugs.

机构信息

Department of Physical Chemistry, University of Tabriz, Tabriz, Iran.

出版信息

Sci Rep. 2022 Aug 16;12(1):13848. doi: 10.1038/s41598-022-18122-x.

Abstract

In recent decades, aqueous two phase systems have gained a lot of attention for extraction of different materials. In this work, an aqueous two phase system was made by polyethylene glycol 600 and potassium hydroxide and phase diagram were determined for this system. The experimental binodal data were described using two empirical nonlinear three parameter expressions developed by Merchuk and Zafarani-Moattar. The consistency of the experimental tie-line data was determined by utilizing the Othmer-Tobias, Bancraft, and Setschenow correlations. Also, the extraction of two analgesic drugs, namely ibuprofen and acetaminophen were investigated by the mentioned ATPS. For this purpose, partition coefficients and extraction efficiencies of each drug were calculated. The trend of extraction efficiencies indicated that the responsibility of extraction of the mentioned drugs into the polymer-rich top phase is related to their hydrophobicity. The Diamond-Hsu equation and its modified version were used to correlate the drugs experimental partition coefficients. Furthermore, the interaction of mentioned drugs with polyethylene glycol was investigated employing quantum computing techniques based upon density functional theory (DFT). These results were in good agreement with the trend of extraction efficiencies of studied drugs.

摘要

近几十年来,双水相系统因其能够萃取不同物质而受到广泛关注。在这项工作中,通过聚乙二醇 600 和氢氧化钾制备了双水相系统,并确定了该系统的相图。使用 Merchuk 和 Zafarani-Moattar 开发的两个经验非线性三参数表达式来描述实验双节点数据。通过使用 Othmer-Tobias、Bancraft 和 Setschenow 相关性来确定实验连接线数据的一致性。此外,还通过上述 ATPS 研究了两种镇痛药,即布洛芬和对乙酰氨基酚的萃取。为此,计算了每种药物的分配系数和萃取效率。萃取效率的趋势表明,将上述药物萃取到富含聚合物的上相中的责任与它们的疏水性有关。使用 Diamond-Hsu 方程及其修正版本对药物的实验分配系数进行关联。此外,还利用基于密度泛函理论(DFT)的量子计算技术研究了这些药物与聚乙二醇的相互作用。这些结果与研究药物的萃取效率趋势一致。

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