Université Libre de Bruxelles, Transfers, Interfaces and Processes, Chemical Engineering Unit, 50 Avenue Franklin D. Roosevelt, CP 165/67, 1050 Bruxelles, Belgium.
Int J Pharm. 2012 Nov 1;437(1-2):156-61. doi: 10.1016/j.ijpharm.2012.07.047. Epub 2012 Jul 28.
This work focuses on the determination of the solid state nature of (RS)-2-(2-oxo-pyrrolidin-1-yl)-butyramide (Etiracetam), the racemic intermediate of (S)-2-(2-oxo-pyrrolidin-1-yl)-butyramide, an Active Pharmaceutical Ingredient, marketed under the name Levetiracetam(®). It is show how this information can easily be extracted from solid-liquid phase diagrams of the racemic system. As two polymorphs of Etiracetam are known (Forms I and II), the analyses have been performed considering both polymorphs. The solid-liquid phase diagrams are determined experimentally, using Differential Scanning Calorimetry, and theoretically, using the Prigogine-Defay and Schroeder-Van Laar equations. Only the phase diagram involving the polymorph stable at higher temperatures (Form II) can be constructed experimentally. The theoretical phase diagram involving this polymorph compares well with the experimental one, thus allowing the use of theoretical equations for the prediction of the solid-liquid phase diagram involving Form I, which is meta-stable above 30.5 °C. Our findings confirm that both polymorphs are racemic compounds, which is also confirmed by XRPD analysis.
这项工作专注于(RS)-2-(2-氧代-吡咯烷-1-基)-丁酸酰胺(依地酸酯)的固态性质的确定,(RS)-2-(2-氧代-吡咯烷-1-基)-丁酸酰胺是一种手性中间体制剂,以商品名左乙拉西坦(Levetiracetam(®))销售。它展示了如何从手性体系的固液相图中轻松提取这些信息。由于依地酸酯有两种已知的多晶型物(形式 I 和 II),因此在考虑两种多晶型物的情况下进行了分析。固液相图通过使用差示扫描量热法进行实验确定,并使用 Prigogine-Defay 和 Schroeder-Van Laar 方程进行理论确定。仅能通过实验构建涉及在较高温度下稳定的多晶型物(形式 II)的相图。涉及该多晶型物的理论相图与实验相图非常吻合,因此可以使用理论方程来预测涉及形式 I 的固液相图,形式 I 在 30.5°C 以上是亚稳的。我们的发现证实了两种多晶型物都是外消旋化合物,这也通过 X 射线粉末衍射(XRPD)分析得到证实。