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冷冻干燥二元体系的混合行为。

Mixing behavior of colyophilized binary systems.

作者信息

Shamblin S L, Taylor L S, Zografi G

机构信息

School of Pharmacy, University of Wisconsin-Madison, 425 North Charter Street, Madison, Wisconsin 53706, USA.

出版信息

J Pharm Sci. 1998 Jun;87(6):694-701. doi: 10.1021/js9704801.

Abstract

The purpose of this study was to investigate the factors which govern the mixing of amorphous sucrose with trehalose, poly(vinylpyrrolidone) (PVP), dextran, and poly(vinylpyrrolidone-co-vinyl acetate) (PVP/VA). These materials were chosen as model systems to represent multicomponent freeze-dried pharmaceutical preparations. Mixtures were prepared by colyophilization of the components from aqueous solutions. The glass transition temperatures (Tg) of these mixtures were measured using differential scanning calorimetry (DSC) and were compared to predictions based on simple mixing rules. FT-Raman spectroscopy was used to probe selected mixtures for evidence of molecular interactions between components. Colyophilized mixtures were confirmed to be amorphous by X-ray powder diffraction. The Tg values of the various mixtures generally were lower than values predicted from free volume and thermodynamic models, indicating that mixing is not ideal. The FT-Raman spectra of colyophilized sucrose-PVP and sucrose-PVP/VA mixtures provided evidence for interaction between the components through hydrogen bonding. Hydrogen bonds formed between components in colyophilized sucrose-additive mixtures are formed at the expense of hydrogen bonds within sucrose and in some cases within the additive. A thermodynamic analysis of these mixtures indicates that mixing is endothermic, which is consistent with a net loss in the degree of hydrogen bonding on mixing. There is also a positive excess entropy of mixing which accompanies the net loss in hydrogen bonds. Despite this gain in excess entropy, the excess free energy of mixing is positive, consistent with the observed deviations in Tg from values predicted using models which assume ideal mixing.

摘要

本研究的目的是探究影响无定形蔗糖与海藻糖、聚维酮(PVP)、葡聚糖以及聚维酮 - 醋酸乙烯酯共聚物(PVP/VA)混合的因素。选择这些材料作为模型体系来代表多组分冻干药物制剂。通过从水溶液中共冻干各组分来制备混合物。使用差示扫描量热法(DSC)测量这些混合物的玻璃化转变温度(Tg),并与基于简单混合规则的预测值进行比较。利用傅里叶变换拉曼光谱对选定的混合物进行探测,以寻找组分间分子相互作用的证据。通过X射线粉末衍射确认共冻干混合物为无定形。各种混合物的Tg值通常低于由自由体积和热力学模型预测的值,表明混合并不理想。共冻干的蔗糖 - PVP和蔗糖 - PVP/VA混合物的傅里叶变换拉曼光谱提供了组分间通过氢键相互作用的证据。在共冻干的蔗糖 - 添加剂混合物中,组分间形成的氢键是以蔗糖内部以及某些情况下添加剂内部的氢键为代价的。对这些混合物的热力学分析表明混合是吸热的,这与混合时氢键程度的净损失一致。在氢键净损失的同时还存在正的混合过量熵。尽管过量熵增加了,但混合过量自由能为正,这与观察到的Tg偏离基于理想混合假设的模型预测值相符。

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