Centre for THz Research, China Jiliang University, Hangzhou 310018, China.
Department of Chemisty, Zhejiang Sci-Tech University, Hangzhou 310018, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2018 Feb 15;191:377-381. doi: 10.1016/j.saa.2017.10.036. Epub 2017 Oct 12.
Vibrational spectroscopic methods, including terahertz absorption and Raman scattering spectroscopy, were utilized for the characterization and analysis of gamma-aminobutyric acid (GABA), benzoic acid (BA), and the corresponding GABA-BA cocrystal formation under various pH values of aqueous solution. Vibrational spectroscopic results demonstrated that the solvent GABA-BA cocrystal, similar as grinding counterpart, possessed unique characteristic features compared with that of starting parent compounds. The change of vibrational modes for GABA-BA cocrystal comparing with starting components indicates there is strong inter-molecular interaction between GABA and BA molecules during its cocrystallization process. Formation of GABA-BA cocrystal under slow solvent evaporation is impacted by the pH value of aqueous solution. Vibrational spectra indicate that the GABA-BA cocrystal could be stably formed with the solvent condition of 2.00≤pH≤7.00. In contrast, such cocrystallization did not occur and the cocrystal would dissociate into its parent components when the pH value of solvent is lower than 2.00. This study provides experimental benchmark to discriminate and identify the structure of cocrystal and also pH-dependent cocrystallization effect with vibrational spectroscopic techniques in solid-state pharmaceutical fields.
振动光谱方法,包括太赫兹吸收和拉曼散射光谱,被用于在不同 pH 值的水溶液中对 γ-氨基丁酸(GABA)、苯甲酸(BA)以及相应的 GABA-BA 共晶形成进行表征和分析。振动光谱结果表明,溶剂 GABA-BA 共晶与研磨对照物相似,具有独特的特征,与起始母体化合物不同。与起始组分相比,GABA-BA 共晶的振动模式变化表明,在其共结晶过程中 GABA 和 BA 分子之间存在强烈的分子间相互作用。在缓慢溶剂蒸发下 GABA-BA 共晶的形成受到水溶液 pH 值的影响。振动光谱表明,在 2.00≤pH≤7.00 的溶剂条件下可以稳定形成 GABA-BA 共晶。相比之下,当溶剂的 pH 值低于 2.00 时,不会发生这种共结晶,共晶会分解为其母体成分。本研究为使用振动光谱技术在固态制药领域中鉴别和识别共晶的结构以及 pH 值依赖性共结晶效应提供了实验基准。