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Formation and Characterization of Crystals Containing a Pleuromutilin Derivative, Succinic Acid and Water

机译:含有截短侧耳素衍生物,琥珀酸和水的晶体的形成和表征

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摘要

An unusual pharmaceutical solid containing a pleuromutilin derivative, succinic acid and water is studied with a combination of physiochemical methods. The parent pleuromutilin derivative creates a host structure that contains large channels, which are occupied by variable amounts of both succinic acid and water. The inherent disorder of the system does not lend itself to detailed single-crystal X-ray diffraction studies; hence a combination of powder X-ray diffraction (PXRD) and solid-state NMR (SSNMR) techniques were used to characterize this system and understand its behavior. A variety of one and two-dimensional SSNMR experiments were used to understand the proton transfer and the hydrogen bonding network, including H-1-C-13 heteronuclear correlation experiments and measurements of the principal components of C-13 chemical shift tensors. This crystal system can exist as two distinct phases; a hemisuccinate phase containing a doubly ionized succinate molecule with two cations of the pleuromutilin derivative, and a succinic acid rich phase which contains a singly ionized succinate molecule hydrogen bonded to another fully protonated succinic acid for every mole of the pleuromutilin derivative. Individual particles can contain mixtures of these two phases, leading to a range of apparent stoichiometries between the succinic acid and pleuromutilin derivative. Both phases are variable hydrates and were characterized by gravimetric vapor sorption and variable humidity 13C SSNMR techniques.
机译:结合理化方法研究了一种含有截短侧耳素衍生物,琥珀酸和水的不寻常药物固体。母体截短侧耳素衍生物产生包含大通道的宿主结构,所述通道被可变量的琥珀酸和水占据。该系统固有的紊乱不适合进行详细的单晶X射线衍射研究。因此,结合使用粉末X射线衍射(PXRD)和固态NMR(SSNMR)技术来表征该系统并了解其行为。使用了多种一维和二维SSNMR实验来了解质子转移和氢键网络,包括H-1-C-13异核相关实验和C-13化学位移张量主要成分的测量。该晶体系统可以以两个不同的相存在。半琥珀酸盐相包含双离子化的琥珀酸分子和截短侧耳素衍生物的两个阳离子,富琥珀酸相包含氢与单分子截短侧耳素衍生物每摩尔结合的氢原子键合到另一个完全质子化的琥珀酸的单离子化的琥珀酸分子。单个颗粒可以包含这两个相的混合物,从而导致琥珀酸和截短侧耳素衍生物之间的表观化学计量范围不同。这两个相都是可变的水合物,并通过重量蒸汽吸附和可变湿度13 C SSNMR技术进行了表征。

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