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Aggregation and Solvation of Steroid Molecules in Different Solvents

机译:类固醇分子在不同溶剂中的聚集和溶剂化

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Ab initio quantum chemical studies at the Hartree-Fock (HF) level with the 6-31G~(**) basis set and molecular dynamics calculations were performed on two pharmaceutical compounds, namely, the budesonide and beclomethasone dipropionate molecules. The possible water binding positions in the budesonide molecule were analyzed using the PM3 Hamiltonian, which gives fairly good geometries for budesonide-water complexes but underestimates dramatically the stabilization energies of the complexes as compared to Hartree-Fock calculations. The most stable complex according to our Hartree-Fock calculations is one where water is bound to the keto group. Its stabilization energy is -30.2 kJ/mol. In the molecular dynamics simulations, clear differences in aggregation of steroid molecules were observed in different solvents. The conformations of steroid molecules from molecular dynamics simulations differ from structures predicted from quantum chemical calculations showing the importance of evaluation of structure in different solvents.
机译:使用6-31G〜(**)基集在Hartree-Fock(HF)级别进行了从头算量子化学研究,并且对布地奈德和倍氯米松二丙酸酯分子进行了分子动力学计算。使用PM3哈密顿量分析了布地奈德分子中可能的水结合位置,该方法为布地奈德-水配合物提供了相当好的几何形状,但与Hartree-Fock计算相比,大大低估了配合物的稳定能。根据我们的Hartree-Fock计算,最稳定的复合物是水与酮基结合的复合物。其稳定能为-30.2 kJ / mol。在分子动力学模拟中,在不同溶剂中观察到类固醇分子聚集的明显差异。来自分子动力学模拟的类固醇分子的构象与由量子化学计算预测的结构不同,表明在不同溶剂中评估结构的重要性。

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