Kiang Y-H, Huq Ashfia, Stephens Peter W, Xu Wei
Merck Research Laboratories, Merck and Co., Inc., PO Box 4, West Point, Pennsylvania, 19426, USA.
J Pharm Sci. 2003 Sep;92(9):1844-53. doi: 10.1002/jps.10430.
The crystal structure of polymorphic Form II of enalapril maleate, a potent angiotensin-converting enzyme inhibitor, was determined from high-resolution X-ray diffraction data using the direct space method. Enalapril maleate Form II crystallizes in space group P2(1)2(1)2(1), Z = 4, with unit cell parameters a = 33.9898(3) A, b = 11.2109(1) A, c = 6.64195(7) A, and V = 2530.96(5) A(3). By treating the molecules as rigid bodies and using the bond lengths and angles obtained from the X-ray single crystal structures of Form I, which were solved almost 20 years ago, the total degrees of freedom of enalapril maleate were reduced from 25 to 12. This reduction in total degrees of freedom allowed the simulated annealing to complete within a reasonable computation time. In the crystal structure of Form II, the crystal packing, hydrogen-bonding pattern, and conformation of enalapril maleate resemble those in the structure of Form I. The crystal packing and conformation of enalapril maleate in the two polymorphic forms may explain the similarity of the thermal properties, (13)C nuclear magnetic resonance, Fourier transform infrared, and Raman spectra of Forms I and II. In both structures, the conformations of the main peptide chains, which are considered responsible for binding the active angiotensin-converting enzyme sites, remain largely unchanged. Lattice energy calculation showed that Form II is slightly more stable than Form I by 3.5 kcal/mole.
强效血管紧张素转换酶抑制剂马来酸依那普利多晶型物II的晶体结构,是通过使用直接空间法的高分辨率X射线衍射数据确定的。马来酸依那普利多晶型物II结晶于空间群P2(1)2(1)2(1),Z = 4,晶胞参数a = 33.9898(3) Å,b = 11.2109(1) Å,c = 6.64195(7) Å,V = 2530.96(5) Å(3)。通过将分子视为刚体,并使用从近20年前解析的I型X射线单晶结构中获得的键长和键角,马来酸依那普利的总自由度从25个减少到12个。总自由度的这种减少使得模拟退火能够在合理的计算时间内完成。在II型晶体结构中,马来酸依那普利的晶体堆积、氢键模式和构象与I型结构中的相似。两种多晶型物中马来酸依那普利的晶体堆积和构象可以解释I型和II型热性质、(13)C核磁共振、傅里叶变换红外光谱和拉曼光谱的相似性。在这两种结构中,被认为负责结合活性血管紧张素转换酶位点的主肽链构象基本保持不变。晶格能计算表明,II型比I型略稳定3.5千卡/摩尔。