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Evaluation of amorphous solid dispersion properties using thermal analysis techniques

机译:使用热分析技术评估非晶态固体分散体的性能

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摘要

Amorphous solid dispersions are an increasingly important formulation approach to improve the dissolution rate and apparent solubility of poorly water soluble compounds. Due to their complex physicochemical properties, there is a need for multi-faceted analytical methods to enable comprehensive characterization, and thermal techniques are widely employed for this purpose. Key parameters of interest that can influence product performance include the glass transition temperature (T g), molecular mobility of the drug, miscibility between the drug and excipients, and the rate and extent of drug crystallization. It is important to evaluate the type of information pertaining to the aforementioned properties that can be extracted from thermal analytical measurements, in addition to considering any inherent assumptions or limitations of the various analytical approaches. Although differential scanning calorimetry (DSC) is the most widely used thermal analytical technique applied to the characterization of amorphous solid dispersions, there are many established and emerging techniques which have been shown to provide useful information. Comprehensive characterization of fundamental material descriptors will ultimately lead to the formulation of more robust solid dispersion products.
机译:非晶态固体分散体是提高水溶性差的化合物的溶解速率和表观溶解度的日益重要的配制方法。由于其复杂的物理化学性质,需要多方面的分析方法以实现全面的表征,并且为此目的广泛使用了热技术。可能会影响产品性能的关键参数包括玻璃化转变温度(T g),药物的分子迁移率,药物与赋形剂之间的互溶性以及药物结晶的速率和程度。除了考虑各种分析方法的任何固有假设或局限性之外,评估与上述性质相关的信息类型也很重要,这些信息可以从热分析测量中提取。尽管差示扫描量热法(DSC)是用于表征非晶态固体分散体的最广泛使用的热分析技术,但已显示许多成熟的和新兴的技术可提供有用的信息。基本材料描述符的全面表征最终将导致配制更坚固的固体分散体产品。

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