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应用热力学相图和混合 Gibbs 自由能筛选用于非玻璃形成药物无定形固体分散体配方的聚合物。

Application of Thermodynamic Phase Diagrams and Gibbs Free Energy of Mixing for Screening of Polymers for Their Use in Amorphous Solid Dispersion Formulation of a Non-Glass-Forming Drug.

机构信息

College of Pharmacy and Health Sciences, St. John's University, Queens, New York 11439, USA.

College of Pharmacy and Health Sciences, St. John's University, Queens, New York 11439, USA.

出版信息

J Pharm Sci. 2021 Jul;110(7):2703-2717. doi: 10.1016/j.xphs.2021.01.036. Epub 2021 Feb 18.

Abstract

The objective of the present investigations was to assess the use of thermodynamic phase diagrams and the Gibbs free energy of mixing, ΔG, for the screening of the polymeric carriers by determining the ideal drug-loading for an amorphous solid dispersion formulation and optimum processing temperature for the hot-melt extrusion of a non-glass-forming drug. Mefenamic acid (MFA) was used as a model non-glass-forming drug and four chemically distinct polymers with close values of the solubility parameters, viz. Kollidon® VA64, Soluplus®, Pluronic® F68, and Eudragit® EPO, were used as carriers. The thermodynamic phase diagrams were constructed using the melting point depression data, Flory-Huggins theory, and Gordan-Taylor equation. The Gibbs free energy of mixing was estimated using the values of the drug-polymer interaction parameter, χ, and Flory-Huggins theory. The rank order miscibility of MFA in the four polymeric carriers estimated based on the difference in the values of their solubility parameters, Δδ, did not correlate well with the thermodynamic phase diagrams and Gibbs free energy plots. The study highlights the limitation of using the solubility parameter method in screening the polymeric carriers for poorly glass-forming drugs and reiterates the applicability of thermodynamic phase diagrams and Gibbs free energy plots in determining the ideal drug-loading and optimum processing temperature for hot-melt extrusion.

摘要

本研究旨在评估使用热力学相图和混合吉布斯自由能(ΔG)筛选聚合物载体,通过确定无定形固体分散体配方的理想药物载药量和热熔挤出非玻璃形成药物的最佳加工温度来实现。以甲芬那酸(MFA)为模型非玻璃形成药物,使用四种化学性质不同、溶解度参数值相近的聚合物(共聚维酮 Kollidon® VA64、共聚维酮 Soluplus®、泊洛沙姆 Pluronic® F68 和 Eudragit® EPO)作为载体。使用熔点降低数据、Flory-Huggins 理论和 Gordon-Taylor 方程构建热力学相图。使用药物-聚合物相互作用参数 χ 和 Flory-Huggins 理论估算混合吉布斯自由能。根据溶解度参数差值估计 MFA 在四种聚合物载体中的相容性排序,与热力学相图和 Gibbs 自由能图相关性不大。该研究强调了在筛选用于形成不良玻璃的药物的聚合物载体时使用溶解度参数方法的局限性,并再次强调了热力学相图和 Gibbs 自由能图在确定热熔挤出的理想药物载药量和最佳加工温度方面的适用性。

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