Wardhana Yoga Windhu, Hardian Arie, Chaerunisa Anis Y, Suendo Veinardi, Soewandhi Sundani N
Department of Pharmaceutics, School of Pharmacy, Institute Technology of Bandung (ITB), Indonesia.
Department of Pharmaceutics and Pharmaceuticals Technology, Faculty of Pharmacy, Universitas Padjadjaran (UNPAD), Indonesia.
Heliyon. 2020 May 5;6(5):e03876. doi: 10.1016/j.heliyon.2020.e03876. eCollection 2020 May.
Investigation into the solid-state transition among drug polymorphs has been more intense lately. Many factors induce the transformation of polymorphs during manufacturing processes. Efavirenz (EFV), an AIDS therapy drug, has more than 23 polymorphs, but very little information has been reported on them. This study aimed to perform a characterisation of EFV polymorph properties and to predict the kinetics and mechanism of the polymorphic transformation of EFV during manufacturing processes. The bimorphism study was conducted by Differential Scanning Calorimetry (DSC) thermal analysis. The phase transition kinetics of the polymorphs was monitored by X-ray powder diffraction and the quantification of concomitant polymorphs was examined using Rietveld refinement with MAUD ver. 2.7 as a software aid. To predict the solid-state transition, correlation coefficients of solid-state kinetic models were fitted to the experimental data. The results show that Form I and Form II of EFV were thermodynamically shown to be monotropy related. By fitting the experimental data, it was found that isothermal treatment had the best model fit with the phase boundary reaction in the two-dimensional model (G2). Accordingly, by employing mechanical treatment (grinding), it was predicted that the transition mechanism is a second-ordered reaction (R2). The activation energy of the transition during isothermal treatment calculated by the Arrhenius plot was found to be 23.051 kJ mol; the half-lif of Form II at ambient temperature was 428.05 min (~7.1 h).
近年来,对药物多晶型物之间固态转变的研究更加深入。许多因素会在制造过程中诱导多晶型物的转变。依法韦仑(EFV)是一种艾滋病治疗药物,有超过23种多晶型物,但关于它们的报道却非常少。本研究旨在对EFV多晶型物的性质进行表征,并预测制造过程中EFV多晶型转变的动力学和机制。通过差示扫描量热法(DSC)热分析进行双晶型研究。用X射线粉末衍射监测多晶型物的相变动力学,并使用MAUD ver. 2.7软件辅助的Rietveld精修法检查伴随多晶型物的定量。为了预测固态转变,将固态动力学模型的相关系数拟合到实验数据中。结果表明,EFV的晶型I和晶型II在热力学上显示为单向性相关。通过拟合实验数据,发现等温处理与二维模型(G2)中的相界反应具有最佳的模型拟合。因此,通过采用机械处理(研磨),预测转变机制为二级反应(R2)。通过阿累尼乌斯图计算的等温处理过程中转变的活化能为23.051 kJ/mol;晶型II在环境温度下的半衰期为428.05分钟(约7.1小时)。