首页> 外文期刊>The Korean journal of chemical engineering >Solubility of celecoxib in N-methyl-2-pyrrolidone plus water mixtures at various temperatures: Experimental data and thermodynamic analysis
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Solubility of celecoxib in N-methyl-2-pyrrolidone plus water mixtures at various temperatures: Experimental data and thermodynamic analysis

机译:塞来昔布在N-甲基-2-吡咯烷酮和水混合物中在不同温度下的溶解度:实验数据和热力学分析

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摘要

Solubility is one of the most significant physicochemical properties of drugs, and improving the solubility of drugs is still a challenging subject in pharmaceutical sciences due to requirements of enhancing their bioavailability. Celecoxib, according to the biopharmaceutics classification system (BCS), is a class 2 drug, possessing low water solubility (< 5 mu g center dot mL(-1)) and high permeability. Increasing the solubility of this group can lead to improved bioavailability, dose reduction and subsequently, increased efficiency and reduced side effects. In this study, celecoxib solubility was determined in binary mixtures of N-methyl-2-pyrrolidone (NMP)+water at 293.2, 298.2, 303.2, 308.2 and 313.2 K. The solubility of celecoxib is increased with the addition of NMP to the aqueous solutions and reaches a maximum value in neat NMP. In addition, increased temperature leads to enhanced solubility of celecoxib in a given solvent composition. The solubility data of celecoxib in NMP+water at different temperatures were correlated using different mathematical models including, the Jouyban-Acree model and a combination of the Jouyban-Acree and van't Hoff models. Thermodynamic parameters, Gibbs energy, enthalpy and entropy of dissolution processes were performed based on Gibbs and van't Hoff equations. Thermodynamic analysis allowed observing two main entropy or enthalpy-driven dissolution mechanisms, varying according to the composition of aqueous mixtures. Moreover, preferential solvation of celecoxib by water is observed in water-rich mixtures but preferential solvation by NMP was seen in mixtures with similar composition and also in NMP-rich mixtures.
机译:溶解度是药物最重要的理化性质之一,由于需要提高其生物利用度,因此提高药物的溶解度在药学领域仍然是一个具有挑战性的课题。根据生物制药分类系统(BCS),塞来昔布是一种2类药物,具有低水溶性(<5μg中心点mL(-1))和高渗透性。增加该组的溶解度可导致改善的生物利用度,剂量减少以及随后的效率提高和副作用减少。在这项研究中,塞来昔布的溶解度是在29-32、298.2、303.2、308.2和313.2 K的N-甲基-2-吡咯烷酮(NMP)+水的二元混合物中测定的。当在水中添加NMP时,塞来昔布的溶解度会增加解决方案,并在纯净NMP中达到最大值。另外,升高的温度导致塞来昔布在给定的溶剂组合物中的溶解度增加。使用不同的数学模型(包括Jouyban-Acree模型以及Jouyban-Acree模型和van't Hoff模型的组合),将塞来昔布在NMP +水中在不同温度下的溶解度数据进行关联。根据Gibbs和van't Hoff方程计算热力学参数,吉布斯能量,焓和溶解过程的熵。热力学分析允许观察两种主要的熵或由焓驱动的溶解机理,其根据含水混合物的组成而变化。此外,在富含水的混合物中观察到塞来昔布被水优先溶解,但在具有相似组成的混合物以及富含NMP的混合物中被NMP优先溶解。

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