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聚(乙二醇-共聚-乙烯醇)的特性作为固体分散体配方中的潜在载体。

Characterization of the copolymer poly(ethyleneglycol-g-vinylalcohol) as a potential carrier in the formulation of solid dispersions.

机构信息

Laboratory for Pharmacotechnology and Biopharmacy, Catholic University of Leuven, Leuven, Belgium.

出版信息

Eur J Pharm Biopharm. 2010 Feb;74(2):239-47. doi: 10.1016/j.ejpb.2009.09.009. Epub 2009 Sep 24.

DOI:10.1016/j.ejpb.2009.09.009
PMID:19782134
Abstract

In order to fully exploit the graft copolymer poly(ethyleneglycol-g-vinylalcohol) (EG/VA) in the formulation of solid dispersions, a characterization of its phase behavior before, during and after spray-drying and hot-melt extrusion is performed. Solid state characterization was performed using MDSC and XRPD. The effect of heating/cooling rate on the degree of crystallinity was studied using HPer DSC and ultra-fast chip calorimetry. EG/VA consists of two semi-crystalline fractions, one corresponding to the polyethyleneglycol (PEG) fraction (T(g)=-57 degrees C, T(m)=15 degrees C) and one corresponding to the polyvinylalcohol (PVA) fraction (T(g)=45 degrees C, T(m)=212 degrees C). XRPD analysis confirmed its semi-crystallinity, and EG/VA showed Bragg reflections comparable to those of PVA. Spray-drying at a temperature lower than 170 degrees C resulted in amorphization of the PVA fraction, while after hot-melt extrusion at different temperatures, the crystallinity of this fraction increases. In both cases, the PEG fraction is not influenced. Plasticization of the amorphous domains of the PEG or PVA fraction of the copolymer was dependent on the type and concentration of plasticizer, suggesting that also other small organic molecules like drugs may not homogeneously mix with both amorphous domains. A controlled cooling rate of 3000 degrees C/s was necessary to make the copolymer completely amorphous.

摘要

为了充分利用接枝共聚物聚(乙二醇-共聚-乙烯醇)(EG/VA)在固体分散体配方中的作用,对其喷雾干燥和热熔挤出前后的相行为进行了表征。采用 MDSC 和 XRPD 进行了固态特性分析。使用 HPer DSC 和超快速芯片量热法研究了加热/冷却速率对结晶度的影响。EG/VA 由两个半结晶部分组成,一个对应于聚乙二醇(PEG)部分(T(g)=-57 摄氏度,T(m)=15 摄氏度),另一个对应于聚乙烯醇(PVA)部分(T(g)=45 摄氏度,T(m)=212 摄氏度)。XRPD 分析证实了其半结晶性,EG/VA 表现出与 PVA 相当的布拉格反射。在低于 170 摄氏度的温度下喷雾干燥会导致 PVA 部分非晶化,而在不同温度下进行热熔挤出后,该部分的结晶度增加。在这两种情况下,PEG 部分不受影响。共聚物的 PEG 或 PVA 部分的无定形域的增塑作用取决于增塑剂的类型和浓度,这表明其他小分子药物也可能不会均匀地与两个无定形域混合。需要以 3000 摄氏度/秒的受控冷却速率使共聚物完全非晶化。

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