The University of Texas at Austin College of Pharmacy, Division of Molecular Pharmaceutics and Drug Delivery, Austin, TX 78712, United States.
The University of Texas at Austin College of Pharmacy, Division of Molecular Pharmaceutics and Drug Delivery, Austin, TX 78712, United States.
Adv Drug Deliv Rev. 2021 Jun;173:374-393. doi: 10.1016/j.addr.2021.03.006. Epub 2021 Mar 27.
Specific mechanical energy (SME) is a frequently overlooked but essential parameter of hot-melt extrusion (HME). It can determine whether an amorphous solid dispersion (ASD) can be successfully processed. A minimum combination of thermal input and SME is required to convert a crystalline active pharmaceutical product (API) into its amorphous form. A maximum combination is allowed before it or the carrier polymer chemically degrades. This has important implications on design space. SME input during HME provides information on the totality of the effect of various independent processing parameters such as screw speed, feed rate, and complex viscosity. If only these independent processing parameters are considered separately instead of SME, then important information would be lost regarding the interaction of these parameters and their ability to affect ASD formulation. A complete understanding of the HME process requires an analysis of SME. This paper provides a review of SME use in the pharmaceutical processing of ASDs, the importance of SME in terms of a variety of formulation qualities, and novel future uses of SME. Theoretical background is discussed, along with the relative importance of thermal and mechanical input on various nonsolvent ASD processing methods.
特定机械能(SME)是热熔挤出(HME)中经常被忽视但至关重要的参数。它可以决定无定形固体分散体(ASD)是否可以成功加工。需要最小的热输入和 SME 组合才能将结晶活性药物产品(API)转化为无定形形式。在它或载体聚合物发生化学降解之前,允许使用最大组合。这对设计空间有重要影响。HME 过程中的 SME 输入提供了有关各种独立加工参数(如螺杆速度、进料速度和复合粘度)总体效果的信息。如果仅单独考虑这些独立的加工参数而不是 SME,那么关于这些参数的相互作用及其影响 ASD 配方的能力的重要信息将会丢失。完整理解 HME 过程需要对 SME 进行分析。本文综述了 SME 在 ASD 制药加工中的应用,以及 SME 在各种配方质量方面的重要性,以及 SME 的未来新用途。讨论了理论背景,以及热和机械输入对各种非溶剂 ASD 加工方法的相对重要性。