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球磨和冷冻研磨对磺胺甲基嘧啶多晶型物的影响:一项定量研究。

Effects of ball-milling and cryomilling on sulfamerazine polymorphs: a quantitative study.

作者信息

Macfhionnghaile Pól, Hu Yun, Gniado Katarzyna, Curran Sinead, Mcardle Patrick, Erxleben Andrea

机构信息

School of Chemistry, National University of Ireland, Galway, Ireland.

出版信息

J Pharm Sci. 2014 Jun;103(6):1766-78. doi: 10.1002/jps.23978. Epub 2014 Apr 22.

Abstract

The effects of ball-milling and cryomilling on sulfamerazine forms I and II (SMZ FI, FII) were investigated using X-ray powder diffraction, infrared and near-infrared (NIR) spectroscopy. Cryomilling resulted in a complete amorphization of both polymorphs. Milling at room temperature gave mixtures of amorphous SMZ (FA) and FII. Calibration models were developed for the quantitative analysis of binary (FI/FII, FI/FA, and FII/FA) and ternary (FI/FII/FA) mixtures using NIR spectroscopy combined with partial least-squares (PLS) regression. The PLS models for binary (0%-100%), ternary (0%-100%), and low-level (0%-10%) binary mixtures had root-mean-square errors of prediction of ≤1.8%, ≤5.1%, and ≤0.80%, respectively. The calibration models were used to obtain a detailed quantitative picture of solid-state transformations during milling and any subsequent recrystallizations. FA prepared by cryomilling FI for less than 60 min recrystallized to mixtures of FI and FII, whereas samples milled for more than 60 min crystallized to pure FII. The effect of comilling SMZ with stoichiometric amounts of additives was investigated. SMZ formed amorphous materials with oxalic, dl-tartaric, and citric acids that were more stable toward recrystallization than FA. Amorphous SMZ/oxalic acid was found to recrystallize to a 2:1 cocrystal during storage.

摘要

采用X射线粉末衍射、红外光谱和近红外(NIR)光谱研究了球磨和低温球磨对磺胺二甲嘧啶晶型I和II(SMZ FI、FII)的影响。低温球磨导致两种多晶型物完全非晶化。室温研磨得到非晶态SMZ(FA)和FII的混合物。结合偏最小二乘(PLS)回归,利用近红外光谱建立了二元(FI/FII、FI/FA和FII/FA)和三元(FI/FII/FA)混合物定量分析的校准模型。二元(0%-100%)、三元(0%-100%)和低含量(0%-10%)二元混合物的PLS模型预测均方根误差分别≤1.8%、≤5.1%和≤0.80%。校准模型用于获得研磨过程中以及随后任何再结晶过程中固态转变的详细定量情况。通过低温球磨FI制备的FA在60分钟内重结晶为FI和FII的混合物,而研磨超过60分钟的样品结晶为纯FII。研究了将SMZ与化学计量的添加剂共研磨的效果。SMZ与草酸、dl-酒石酸和柠檬酸形成非晶态材料,这些材料比FA对再结晶更稳定。发现非晶态SMZ/草酸在储存过程中重结晶为2:1的共晶体。

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