Herboth Radost, Lyubartsev Alexander P
Department of Materials and Environmental Chemistry, Stockholm University, Svante Arrhenius väg 16C, 106 91 Stockholm, Sweden.
ACS Omega. 2024 Aug 16;9(34):36718-36731. doi: 10.1021/acsomega.4c05458. eCollection 2024 Aug 27.
In this work, the polymorphism of the active pharmaceutical ingredient carbamazepine (CBZ) was investigated by using molecular dynamics simulations with an enhanced sampling scheme. A single molecule of CBZ attaching to flat surfaces of different polymorphs was used as a model for secondary nucleation in water. A novel approach was developed to compute the free energy profile characterizing the adsorption of molecules with orientation aligned with the crystal structure of the surface. The distribution of states that showed alignment was used to rescale the adsorption free energy to include only the contribution that is consistent with crystal growth. The resulting free energy surfaces showed favorable thermodynamics for the most stable form, Form III and the second most stable form, Form I. The primary crystallization product, a dihydrate, was found to be less favorable, implying a nonclassical crystallization pathway. We suggest that a major contribution determining the energetics is the hydrophobicity of the surface. This thermodynamic ranking provides valuable information about the molecular pathways of polymorph growth and will further contribute to the understanding of the crystallization process of CBZ, which is imperative since polymorph formation can alter the physical properties of a drug significantly.
在这项工作中,采用具有增强采样方案的分子动力学模拟研究了活性药物成分卡马西平(CBZ)的多晶型现象。将单个附着在不同多晶型平面表面的CBZ分子用作水中二次成核的模型。开发了一种新方法来计算自由能分布,该分布表征了分子以与表面晶体结构对齐的取向进行吸附的情况。显示对齐的状态分布用于重新缩放吸附自由能,以仅包括与晶体生长一致的贡献。所得的自由能表面显示出对最稳定晶型III和第二稳定晶型I有利的热力学性质。发现初级结晶产物二水合物不太有利,这意味着非经典的结晶途径。我们认为决定能量学的主要因素是表面的疏水性。这种热力学排序提供了有关多晶型生长分子途径的有价值信息,并将进一步有助于理解CBZ的结晶过程,这是至关重要的,因为多晶型的形成会显著改变药物的物理性质。