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(5α,17E)-17-肼基雄甾-3-醇二水合物和三水合物的晶体结构及 Hirshfeld 表面分析:氢键模式和超分子排列的显著差异

Crystal structures and Hirshfeld surface analyses of the di- and tri-hydrates of (5α,17E)-17-hydrazonoandrostan-3-ol: Significant differences in the hydrogen bonding patterns and supramolecular arrangements.

作者信息

Gomes Ligia R, Low John N, Turner Alan B, Baddeley Thomas C, Wardell James L

机构信息

FP-ENAS-Faculdade de Ciências de Saúde, Escola Superior de Saúde da UFP, Universidade Fernando Pessoa, Rua Carlos da Maia, 296, P-4200-150 Porto, Portugal; REQUIMTE, Departamento de Química e Bioquímica, Faculdade de Ciências da Universidade do Porto, Rua do Campo Alegre, 687, P-4169-007 Porto, Portugal.

Department of Chemistry, University of Aberdeen, Meston Walk, Old Aberdeen AB24 3UE, Scotland.

出版信息

Steroids. 2018 Dec;140:92-103. doi: 10.1016/j.steroids.2018.09.010. Epub 2018 Sep 29.

Abstract

The crystal structures, Hirshfeld surface analyses and electrostatic potential surfaces of the di- and tri-hydrates of (5α,17E)-17-hydrazonoandrostan-3-ol, 3, namely [3·(HO)] and [3·(HO)], are reported. The trihydrate, isolated from a solution of 3 in moist methanol, recrystallizes in the orthorhombic space group, P222, while that of the dihydrate, isolated from a 1:1 aqueous methanol solution, recrystallizes in the monoclinic space group, P2. The asymmetric unit of the trihydrate involves one steroid and three water molecules, while that of the dihydrate has two similar but independent steroid molecules and four hydrate molecules. Very similar conformations are found for the steroid molecules in both hydrates. As expected, the different mole ratios of water: steroid have major influences on the structures. In both cases, complex crystal structures are constructed from various classical hydrogen bonds, involving the hydrate molecules and the hydroxy and hydrazonyl moieties of the steroid. In the trihydrate, there are no direct connections between the steroid molecules, instead the water molecules link the steroid molecules, with only weak van der Waals forces between the steroid molecules. There are some direct links between the steroid molecules in the dihydrate, involving OH(steroid hydroxyl)⋯O(steroid oxo) hydrogen bonds, in a head to head fashion, and OH⋯N(hydrazonyl) hydrogen bonds, in a head to tail fashion. However, the major occurrence throughout the structure is of steroid molecules linked by water molecules.

摘要

报道了(5α,17E)-17-肼基雄甾-3-醇(即[3·(HO)]和[3·(HO)])的二水合物和三水合物的晶体结构、 Hirshfeld表面分析及静电势表面。三水合物是从3在湿甲醇中的溶液中分离得到的,在正交晶系空间群P222中重结晶,而二水合物是从甲醇水溶液(1:1)中分离得到的,在单斜晶系空间群P2中重结晶。三水合物的不对称单元包含一个甾体和三个水分子,而二水合物的不对称单元有两个相似但独立的甾体分子和四个水合分子。在两种水合物中,甾体分子具有非常相似的构象。正如预期的那样,水与甾体的不同摩尔比对结构有重大影响。在这两种情况下,复杂的晶体结构都是由各种经典氢键构建而成,涉及水合分子以及甾体的羟基和肼基部分。在三水合物中,甾体分子之间没有直接连接,而是水分子连接甾体分子,甾体分子之间只有微弱的范德华力。在二水合物中,甾体分子之间存在一些直接连接,包括以头对头方式的OH(甾体羟基)⋯O(甾体酮基)氢键和以头对尾方式的OH⋯N(肼基)氢键。然而,整个结构中主要的情况是甾体分子由水分子连接。

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