Badour Alec R, Wisniewski John A, Mohanty Dillip K, Squattrito Philip J
Department of Chemistry and Biochemistry, Central Michigan University, Mount Pleasant, Michigan 48859, USA.
Acta Crystallogr C Struct Chem. 2016 May 1;72(Pt 5):405-10. doi: 10.1107/S2053229616005763. Epub 2016 Apr 13.
Notwithstanding its simple structure, the chemistry of nitric oxide (NO) is complex. As a radical, NO is highly reactive. NO also has profound effects on the cardiovascular system. In order to regulate NO levels, direct therapeutic interventions include the development of numerous NO donors. Most of these donors release NO in a single high-concentration burst, which is deleterious. N-Nitrosated secondary amines release NO in a slow, sustained, and rate-tunable manner. Two new precursors to sustained NO-releasing materials have been characterized. N-[2-(3,4-Dimethoxyphenyl)ethyl]-2,4-dinitroaniline, C16H17N3O6, (I), crystallizes with one independent molecule in the asymmetric unit. The adjacent amine and nitro groups form an intramolecular N-H...O hydrogen bond. The anti conformation about the phenylethyl-to-aniline C-N bond leads to the planes of the arene and aniline rings being approximately perpendicular. Molecules are linked into dimers by weak intermolecular N-H...O hydrogen bonds such that each amine H atom participates in a three-center interaction with two nitro O atoms. The dimers pack so that the arene rings of adjacent molecules are not parallel and π-π interactions do not appear to be favored. N-(4-Methylsulfonyl-2-nitrophenyl)-L-phenylalanine, C16H16N2O6S, (II), with an optically active center, also crystallizes with one unique molecule in the asymmetric unit. The L enantiomer was established via the configuration of the starting material and was confirmed by refinement of the Flack parameter. As in (I), there is an intramolecular N-H...O hydrogen bond between adjacent amine and nitro groups. The conformation of the molecule is such that the arene rings display a dihedral angle of ca 60°. Unlike (I), molecules are not linked via intermolecular N-H...O hydrogen bonds. Rather, the carboxylic acid H atom forms a classic, approximately linear, O-H...O hydrogen bond with a sulfone O atom. Pairs of molecules related by twofold rotation axes are linked into dimers by two such interactions. The packing pattern features a zigzag arrangement of the arene rings without apparent π-π interactions. These structures are compared with reported analogues, revealing significant differences in molecular conformation, intermolecular interactions, and packing that result from modest changes in functional groups. The structures are discussed in terms of potential NO-release capability.
尽管一氧化氮(NO)结构简单,但其化学性质却很复杂。作为一种自由基,NO具有高反应活性。NO对心血管系统也有深远影响。为了调节NO水平,直接的治疗干预措施包括开发多种NO供体。这些供体大多以单次高浓度爆发的形式释放NO,这是有害的。N-亚硝基化仲胺以缓慢、持续且速率可调的方式释放NO。已对两种新型持续释放NO材料的前体进行了表征。N-[2-(3,4-二甲氧基苯基)乙基]-2,4-二硝基苯胺,C16H17N3O6,(I),在不对称单元中结晶为一个独立分子。相邻的胺基和硝基形成分子内N-H...O氢键。苯乙基与苯胺C-N键周围的反式构象导致芳烃环和苯胺环的平面大致垂直。分子通过弱分子间N-H...O氢键连接成二聚体,使得每个胺基H原子与两个硝基O原子参与三中心相互作用。二聚体堆积时,相邻分子的芳烃环不平行,且似乎不倾向于形成π-π相互作用。N-(4-甲基磺酰基-2-硝基苯基)-L-苯丙氨酸,C16H16N2O6S,(II),具有一个手性活性中心,在不对称单元中也结晶为一个独特分子。L-对映体通过起始原料的构型确定,并通过Flack参数的精修得到证实。与(I)一样,相邻的胺基和硝基之间存在分子内N-H...O氢键。分子构象使得芳烃环呈现约60°的二面角。与(I)不同,分子不是通过分子间N-H...O氢键连接。相反,羧酸H原子与一个砜O原子形成经典的、近似线性的O-H...O氢键。通过二次旋转轴相关的分子对通过两个这样的相互作用连接成二聚体。堆积模式的特征是芳烃环呈锯齿状排列,没有明显的π-π相互作用。将这些结构与已报道的类似物进行比较,发现官能团的适度变化导致分子构象、分子间相互作用和堆积存在显著差异。根据潜在的NO释放能力对这些结构进行了讨论。