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二级相互作用对水杨酸酯:4-羟基苯甲酰胺共晶体的结构、升华热力学及溶解度的影响。实验与理论相结合的研究

Influence of Secondary Interactions on the Structure, Sublimation Thermodynamics, and Solubility of Salicylate:4-Hydroxybenzamide Cocrystals. Combined Experimental and Theoretical Study.

作者信息

Manin Alex N, Voronin Alexander P, Shishkina Anastasia V, Vener Mikhail V, Churakov Andrei V, Perlovich German L

机构信息

†G.A. Krestov Institute of Solution Chemistry, Russian Academy of Sciences, 1, Academicheskaya, 153045 Ivanovo, Russian Federation.

‡Mendeleev University of Chemical Technology, 9, Miusskaya Square, 125047 Moscow, Russia.

出版信息

J Phys Chem B. 2015 Aug 20;119(33):10466-77. doi: 10.1021/acs.jpcb.5b05082. Epub 2015 Aug 10.

DOI:10.1021/acs.jpcb.5b05082
PMID:26258951
Abstract

Cocrystal screening of 4-hydroxybenzamide with a number of salicylates (salicylic acid, SA; 4-aminosalicylic acid, PASA; acetylsalicylic acid, ASA; and salicylsalicylic acid, SSA) was conducted to confirm the formation of two cocrystals, [SA+4-OHBZA] (1:1) and [PASA+4-OHBZA] (1:1). Their structures were determined using single-crystal X-ray diffraction, and the hydrogen-bond network topology was studied. Thermodynamic characteristics of salicylic acid cocrystal sublimation were obtained experimentally. It was proved that PASA cocrystallization with 4-OHBZA makes the drug more stable and prevents the irreversible process of decarboxylation of PASA resulting in formation of toxic 3-aminophenol. The pattern of non-covalent interactions in the cocrystals is described quantitatively using solid-state density functional theory followed by Bader analysis of the periodic electron density. It has been found that the total energy of secondary interactions between synthon atoms and the side hydroxyl group of the acid molecule in [SA+4-OHBZA] (1:1) and [PASA+4-OHBZA] (1:1) cocrystals is comparable to the energy of the primary acid-amide heterosynthon. The theoretical value of the sublimation enthalpy of [SA+4-OHBZA], 231 kJ/mol, agrees fairly well with the experimental one, 272 kJ/mol. The dissolution experiments with [SA+4-OHBZA] have proved that the relatively large cocrystal stability in relation to the stability of its components has a negative effect on the dissolution rate and equilibrium solubility. The [PASA+4-OHBZA] (1:1) cocrystal showed an enhancement of apparent solubility compared to that of the corresponding pure active pharmaceutical ingredient, while their intrinsic dissolution rates are comparable.

摘要

对4-羟基苯甲酰胺与多种水杨酸盐(水杨酸,SA;4-氨基水杨酸,PASA;乙酰水杨酸,ASA;以及双水杨酸,SSA)进行了共晶筛选,以确认两种共晶[SA + 4-OHBZA](1:1)和[PASA + 4-OHBZA](1:1)的形成。使用单晶X射线衍射确定了它们的结构,并研究了氢键网络拓扑结构。通过实验获得了水杨酸共晶升华的热力学特性。事实证明,PASA与4-OHBZA共结晶使药物更稳定,并防止了PASA脱羧生成有毒的3-氨基酚的不可逆过程。使用固态密度泛函理论对共晶中的非共价相互作用模式进行了定量描述,随后对周期性电子密度进行了巴德分析。已发现[SA + 4-OHBZA](1:1)和[PASA + 4-OHBZA](1:1)共晶中合成子原子与酸分子侧羟基之间二级相互作用的总能量与初级酸 - 酰胺杂合成子的能量相当。[SA + 4-OHBZA]升华焓的理论值231 kJ/mol与实验值272 kJ/mol相当吻合。对[SA + 4-OHBZA]的溶解实验证明,相对于其组分的稳定性而言,相对较大的共晶稳定性对溶解速率和平衡溶解度有负面影响。与相应的纯活性药物成分相比,[PASA + 4-OHBZA](1:1)共晶的表观溶解度有所提高,而它们的固有溶解速率相当。

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