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静电纺丝形成的 API 和赋形剂高载量固溶体的固态 NMR 表征。

Solid-state NMR characterization of high-loading solid solutions of API and excipients formed by electrospinning.

机构信息

Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.

出版信息

J Pharm Sci. 2012 Apr;101(4):1538-45. doi: 10.1002/jps.23032. Epub 2011 Dec 27.

Abstract

A major focus area in improving pharmaceutical manufacturing is decreasing powder-handling steps such as milling, granulation, and blending. One approach to go directly from active pharmaceutical ingredients (API) and excipients in solution to a formulated drug product is to use electrospinning to make solid formulations of API in a polymer. Because of the rapid evaporation rate in electrospinning, the process usually results in a well-mixed solid dispersion of drugs in the polymer. In this study, solid-state nuclear magnetic resonance is used to examine phase separation in formulations of aliskiren (SPP) and indomethacin (IND) with polyvinylpyrrolidone (PVP) prepared by electrospinning and hot-melt extrusion. It was found that 1:1 SPP-PVP, 1:1 IND-PVP, and 4:1 SPP-PVP formulations prepared by electrospinning are homogeneous solid solutions down to a 2-11 nm length scale, whereas a 4:1 SPP-PVP formulation prepared by hot-melt extrusion exhibits phase separation with domain sizes of 20-100 nm or larger.

摘要

改善制药制造的一个主要重点领域是减少粉末处理步骤,如研磨、造粒和混合。一种直接从原料药(API)和赋形剂在溶液中制备配方药物产品的方法是使用静电纺丝将 API 制成聚合物中的固体配方。由于静电纺丝中的快速蒸发速率,该过程通常导致药物在聚合物中的良好混合固体分散体。在这项研究中,使用固态核磁共振研究了通过静电纺丝和热熔挤出制备的阿利克仑(SPP)和吲哚美辛(IND)与聚乙烯吡咯烷酮(PVP)的配方中的相分离。发现 1:1 SPP-PVP、1:1 IND-PVP 和 4:1 SPP-PVP 配方通过静电纺丝制备的是均一的固体溶液,直到 2-11nm 的长度尺度,而通过热熔挤出制备的 4:1 SPP-PVP 配方则表现出具有 20-100nm 或更大尺寸的域的相分离。

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