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Thermal Stability of Amorphous Solid Dispersions

机译:无定形固体分散体的热稳定性

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摘要

Amorphous solid dispersion drug delivery systems (ASD DDS) were proved to be efficient for the enhancement of solubility and bioavailability of poorly water-soluble drugs. One of the major keys for successful preparation of ASD is the selection of appropriate excipients, mostly polymers, which have a crucial role in improving drug solubility and its physical stability. Even though, excipients should be chemically inert, there is some evidence that polymers can affect the thermal stability of active pharmaceutical ingredients (API). The thermal stability of a drug is closely related to the shelf-life of pharmaceutical products and therefore it is a matter of high pharmaceutical relevance. An overview of thermal stability of amorphous solids is provided in this paper. Evaluation of thermal stability of amorphous solid dispersion is perceived from the physicochemical perspective, from a kinetic (motions) and thermodynamic (energy) point of view, focusing on activation energy and fragility, as well all other relevant parameters for ASD design, with a glance on computational kinetic analysis of solid-state decomposition.
机译:证明无定形固体分散药物递送系统(ASD DDS)可有效地增强水溶性较差的药物的溶解度和生物利用度。成功制备ASD的主要键之一是选择合适的赋形剂,主要是具有至关重要的作用在提高药物溶解度及其物理稳定性方面具有至关重要的作用。即使,赋形剂应该化学惰性,有一些证据表明聚合物可以影响活性药物成分(API)的热稳定性。药物的热稳定性与药物产品的保质期密切相关,因此它是一种高药物相关性的问题。本文提供了无定形固体的热稳定性概述。无定形固体分散体的热稳定性的评估是从物理化学的角度来看,来自动力学的(运动)和热力学(能量)的观点来看,专注于激活能量和脆弱性,以及ASD设计的所有其他相关参数,一目了然关于固态分解的计算动力学分析。

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