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Solubility Hansen Solubility Parameters and Thermodynamic Behavior of Emtricitabine in Various (Polyethylene Glycol-400 + Water) Mixtures: Computational Modeling and Thermodynamics

机译:恩曲他滨在多种(聚乙二醇-400 +水)混合物中的溶解度汉森溶解度参数和热力学行为:计算模型和热力学

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摘要

This study was aimed to find out the solubility, thermodynamic behavior, Hansen solubility parameters and molecular interactions of an antiviral drug emtricitabine (ECT) in various “[polyethylene glycol-400 (PEG-400) + water]” mixtures. The solubility of ECT in mole fraction was determined at “ = 298.2 to 318.2 K” and “ = 0.1 MPa” using an isothermal method. The experimental solubilities of ECT in mole fraction were validated and correlated using various computational models which includes “Van’t Hoff, Apelblat, Yalkowsky-Roseman, Jouyban-Acree and Jouyban-Acree-Van’t Hoff models”. All the models performed well in terms of model correlation. The solubility of ECT was increased with the raise in temperature in all “PEG-400 + water” mixtures studied. The highest and lowest solubility values of ECT were found in pure PEG-400 (1.45 × 10 ) at “ = 318.2 K” and pure water (7.95 × 10 ) at “ = 298.2 K”, respectively. The quantitative values of activity coefficients indicated higher interactions at molecular level in ECT and PEG-400 combination compared with ECT and water combination. “Apparent thermodynamic analysis” showed an “endothermic and entropy-driven dissolution” of ECT in all “PEG-400 + water” combinations studied. The solvation nature of ECT was found an “enthalpy-driven” in each “PEG-400 + water” mixture studied.
机译:这项研究旨在找出抗病毒药物恩曲他滨(ECT)在各种“ [聚乙二醇-400(PEG-400)+水]”混合物中的溶解度,热力学行为,汉森溶解度参数和分子相互作用。使用等温法在“ = 298.2至318.2K”和“ = 0.1MPa”下确定ECT在摩尔分数中的溶解度。 ECT在摩尔分数中的实验溶解度已通过各种计算模型进行了验证和关联,这些模型包括“范特霍夫,阿珀拉普拉特,雅各夫斯基-罗斯曼,乔伊班-阿克里和乔伊班-阿克里-范霍特模型”。在模型相关性方面,所有模型均表现良好。在所有研究的“ PEG-400 +水”混合物中,ECT的溶解度均随温度升高而增加。在“ = 318.2 K”处的纯PEG-400(1.45×10)和在“ = 298.2 K”处的纯水(7.95×10)中分别发现了ECT的最高和最低溶解度值。活性系数的定量值表明,与ECT和水组合相比,ECT和PEG-400组合在分子水平上具有更高的相互作用。 “表观热力学分析”显示了在所有研究的“ PEG-400 +水”组合中ECT的“吸热和熵驱动溶出”。在研究的每种“ PEG-400 +水”混合物中,发现ECT的溶剂化性质都是“焓驱动”的。

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