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Benzodiazepines co -crystals screening using FTIR and Raman spectroscopy supported by differential scanning calorimetry

机译:苯二氮卓类公司使用FTIR和拉曼光谱通过差示扫描量热法支撑的CO-筛选

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Co-crystals, which are defined as "solids that are crystalline materials composed of two or more molecules in the same crystal lattice" have recently been the focus of increased interest in the pharmaceutical industry since cocrystallization can improve unfavorable physicochemical properties of active pharmaceutical ingredients. Thus, the quest for new co -crystal screening methods has become an issue of importance. The aim of this work was, therefore, to show to what extent expanded methodology based on FTIR and Raman spectroscopy supported by the DSC method can be used as a reliable tool to screen co-ciystallization. Because co-crystals of benzodiazepines had not yet been obtained, a set of 72 binary mixtures composed of eight 1,4-benzodiazepine derivatives and nine coformers were used as model substances. Potential co -crystals were prepared in solid-state by liquid -assisted grinding procedure. The characteristic- [FIR and Raman bands which reflect hydrogen bond formation between benzodiazepine and coformer were used as proof of co -crystal creation. DSC was used as a supporting tool to reflect the phase transitions which occur during co -crystallization. As a result of the study, four potential co -crystals can be selected: lorazepam with nicotinamide, chlordiazepoxide with paminobenzoic and saccharin, and estazolam with fumaric acid. The detailed spectral and thermal characteristics of these systems are presented in this work. Thus, the proposed methodology of co-crystal screening based on FTIR and Raman data supported by the DSC examination of phase transitions facilitates the screening and detection of benzodiazepine co -crystal prepared by short time components ground with a slight additional volume of solvent. 2020 Elsevier B.V. All rights reserved.
机译:共晶体,其被定义为“在相同的晶格两个或多个分子组成的结晶材料固体”最近一直以来共结晶可以提高活性药物成分的不利的物理化学性质在制药工业中增加的兴趣的焦点。因此,对于新的合作型结晶筛选方法的探索已经成为重要的问题。这个工作的目的是,因此,以显示基于FTIR和拉曼程度扩大方法光谱通过DSC方法支持什么可以作为一个可靠的工具到屏幕共ciystallization。因为尚未得到苯并二氮杂类的共晶体,一组72个8 1,4-苯并二氮杂衍生物和九个助形成物组成的二元混合物作为模型物质。通过液体-assisted研磨过程中的固态制备潜在共同-crystals。反映苯并二氮杂和共形成之间氢键形成的characteristic- [FIR和拉曼带用作共同创作型结晶的证明。 DSC用作辅助工具,以反映共-crystallization期间出现的相变。作为研究的结果,四个潜在共-crystals可以选自:烟酰胺劳拉西泮,利眠宁与paminobenzoic和糖精,和用富马酸艾司唑仑。这些系统的详细光谱和热特性在此工作介绍。因此,共晶的提议的方法筛选基于由相位跃变的检查DSC支持FTIR和拉曼数据便于通过短时间组件与地面的溶剂轻微额外体积来制备苯并二氮杂共型结晶的筛选和检测。 2020 Elsevier B.v.保留所有权利。

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