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Physical stabilization of low-molecular-weight amorphous drugs in the solid state: A material science approach

机译:固态低分子量无定形药物的物理稳定性:材料科学方法

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摘要

Use of the amorphous state is considered to be one of the most effective approaches for improving the dissolution and subsequent oral bioavailability of poorly water-soluble drugs. However as the amorphous state has much higher physical instability in comparison with its crystalline counterpart, stabilization of amorphous drugs in a solid-dosage form presents a major challenge to formulators. The currently used approaches for stabilizing amorphous drug are discussed in this article with respect to their preparation, mechanism of stabilization and limitations. In order to realize the potential of amorphous formulations, significant efforts are required to enable the prediction of formulation performance. This will facilitate the development of computational tools that can inform a rapid and rational formulation development process for amorphous drugs.
机译:使用非晶态被认为是改善水溶性差的药物的溶解度和随后的口服生物利用度的最有效方法之一。然而,由于无定形状态与其结晶对应物相比具有更高的物理不稳定性,所以以固体剂型形式稳定无定形药物对配方设计师提出了重大挑战。本文讨论了目前用于稳定无定形药物的方法,涉及它们的制备,稳定机理和局限性。为了实现无定形制剂的潜力,需要付出巨大的努力来预测制剂的性能。这将促进计算工具的开发,这些工具可以为无定形药物的快速合理的制剂开发过程提供信息。

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