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Hydrogen bonding features of amide functionalities in four novel salts of an antiemetic drug domperidone

机译:四种新盐的抗助药剂中含有酰胺官能团的氢键特征

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Domperidone, 5-chloro-1-(1-[3-(2-oxo-2,3-dihydro-1H-benzo-[d] imidazol-1-yl)propyl]-piperidin-4-yl)-1H-benzo[d]imidazol-2(3H)-one, C22H24ClN5O2, is an antiemetic drug, used to relieve the patients from nausea and vomiting sickness. In the present study, four novel domperidone salts viz., domperidone chloride hydrate methanol solvate, (I), bis(domperidone nitrate nitric acid) hydrate, (II), domperidone nitrate 1.046 hydrate (III) and domperidone methylsulfate hemihydrate, (IV) are reported. Structure (I) crystallized in the monoclinic space group P2(1)/n, while, structures of (II) - (IV) crystallized in the triclinic space group P (1) over bar. In all four structures the N atom of piperidine ring is protonated and further confirmed by IR and H-1 NMR analyses. In (I), (II) and molecule B of (III), the orientation of chlorine-substituted oxobenzimidazolyl and non-substituted oxobenzimidazolyl rings are in anti-clinal conformations, while molecule A of (III) and (IV), are in syn-clinal conformations. The protonated piperidine ring adopts a chair conformation in all four structures. In (I), inversion-related domperidone molecules are involved in forming a R-2(2) (28) dimer, while in (II), symmetry independent domperidone molecules A and B are involved in constructing the R-2(2) (28) dimer. In (III) and (IV), two sets of amide R-2(2) (8) dimer are observed. In all four structures, the anions and solvent molecules play a crucial role in aggregating the domperidone dimers into three-dimensional hydrogen bonded networks. It is interesting to note that the characteristic feature of domperidone, amide R-2(2) (8) dimer is observed in (III) and (IV), while, in (I) and (II), a very different and unique R-2(2) (28) dimer is observed between the domperidone molecules. The formation of this R-2(2) (28) dimer appears to be influenced by the conformations of the chlorine-substituted oxobenzimidazolyl and non-substituted oxobenzimidazolyl groups. (C) 2021 Elsevier B.V. All rights reserved.
机译:多潘立酮,5-氯-1-(1-[3-(2-氧代-2,3-二氢-1H-苯并-[d]咪唑-1-基)丙基]-哌啶-4-基)-1H-苯并[d]咪唑-2(3H)-酮C22H24ClN5O2是一种止吐药,用于缓解患者的恶心呕吐症状。在本研究中,四种新型多潘立酮盐。,报道了水合氯多潘立酮甲醇溶剂化物(I)、双(硝酸多潘立酮)水合物(II)、硝酸多潘立酮1.046水合物(III)和硫酸甲基多潘立酮半水合物(IV)。结构(I)在单斜空间群P2(1)/n中结晶,而(II)-(IV)的结构在棒上的三斜空间群P(1)中结晶。在所有四种结构中,哌啶环的N原子都被质子化,并通过IR和H-1 NMR分析进一步证实。在(I)、(II)和(III)的分子B中,氯取代的氧代苯并咪唑基和非取代的氧代苯并咪唑基环的取向为反临床构象,而(III)和(IV)的分子A为同临床构象。质子化哌啶环在所有四种结构中均采用椅子构象。在(I)中,与反转相关的多潘立酮分子参与形成R-2(2)(28)二聚体,而在(II)中,与对称性无关的多潘立酮分子a和B参与构建R-2(2)(28)二聚体。在(III)和(IV)中,观察到两组酰胺R-2(2)(8)二聚体。在所有四种结构中,阴离子和溶剂分子在将多潘立酮二聚体聚集成三维氢键网络中起着关键作用。有趣的是,在(III)和(IV)中观察到了多潘立酮的特征,酰胺R-2(2)(8)二聚体,而在(I)和(II)中,在多潘立酮分子之间观察到了非常不同和独特的R-2(2)(28)二聚体。这种R-2(2)(28)二聚体的形成似乎受到氯取代的氧代苯并咪唑基和非取代的氧代苯并咪唑基的构象的影响。(c)2021爱思唯尔B.V.保留所有权利。

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