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奈韦拉平的溶剂化结晶形式:热分析和光谱研究。

Solvated crystalline forms of nevirapine: thermoanalytical and spectroscopic studies.

机构信息

University Institute of Pharmaceutical Sciences, Panjab University, Chandigarh, 160014, India.

出版信息

AAPS PharmSciTech. 2010 Sep;11(3):1328-39. doi: 10.1208/s12249-010-9511-z. Epub 2010 Aug 25.

Abstract

The study is aimed at exploring the utility of thermoanalytical methods in the solid-state characterization of various crystalline forms of nevirapine. The different forms obtained by recrystallization of nevirapine from various solvents were identified using differential scanning calorimetry and thermogravimetric analysis (TGA). The appearance of desolvation peak accompanied by weight loss in TGA indicated the formation of solvates: hemi-ethanolate (Form I), hemi-acetonitrilate (Form II), hemi-chloroformate (Form III), hemi-THF solvate (Form IV), mixed hemi-ethanolate hemi-hydrate (Form V), and hemi-toluenate (Form VI). The higher desolvation temperatures of all the solvates except toluenate than their respective boiling point indicate tighter binding of solvent. Emphasis has been laid on the determination of heat capacity and heat of solution utilizing microreaction calorimeter to further distinguish the various forms. The enthalpy of solution (ΔH(sol)), an indirect measure of the lattice energy of a solid, was well correlated with the crystallinity of all the solid forms obtained. The magnitude of ΔH(sol) was found to be -14.14 kJ/mol for Form I and -2.83 kJ/mol for Form V in phosphate buffer of pH 2, exhibiting maximum ease of molecular release from the lattice in Form I. The heat capacity for solvation (ΔC(p)) was found to be positive, providing information about the state of solvent molecules in the host lattice. The solubility and dissolution rate of the forms were also found to be in agreement with their enthalpy of solution. Form (I), being the most exothermic, was found to be the most soluble of all the forms.

摘要

本研究旨在探索热分析方法在奈韦拉平各种晶型的固态特性中的应用。通过奈韦拉平在不同溶剂中的重结晶,使用差示扫描量热法和热重分析(TGA)对其不同晶型进行了鉴定。TGA 中伴随着重量损失的去溶剂化峰的出现表明形成了溶剂化物:半乙醇酸盐(形式 I)、半乙腈盐(形式 II)、半氯甲酸酯(形式 III)、半四氢呋喃溶剂化物(形式 IV)、混合半乙醇酸盐半水合物(形式 V)和半甲苯盐(形式 VI)。除甲苯盐外,所有溶剂化物的去溶剂化温度均高于各自的沸点,表明溶剂的结合更紧密。利用微量反应量热仪测定比热容和溶解热,以进一步区分各种形式,这一点得到了强调。溶解热(ΔH(sol))是固体晶格能的间接衡量标准,与所有获得的固体形式的结晶度密切相关。在 pH 2 的磷酸盐缓冲液中,形式 I 的ΔH(sol)值为-14.14 kJ/mol,形式 V 的ΔH(sol)值为-2.83 kJ/mol,表明形式 I 中分子从晶格中释放的容易程度最大。溶剂化热容量(ΔC(p))为正值,提供了关于主体晶格中溶剂分子状态的信息。还发现各形式的溶解度和溶解速率与其溶解热一致。形式 I 的溶解度最高,是所有形式中最易溶解的。

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