首页> 外文期刊>Journal of chemical information and modeling >Topology of the Interactions Pattern in Pharmaceutically Relevant Polymorphs of Methylxanthines (Caffeine, Theobromine, and Theophiline):Combined Experimental (~1H-~(14)N Nuclear Quadrupole Double Resonance) and Computational (DFT and Hirshfeld-Based) Study
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Topology of the Interactions Pattern in Pharmaceutically Relevant Polymorphs of Methylxanthines (Caffeine, Theobromine, and Theophiline):Combined Experimental (~1H-~(14)N Nuclear Quadrupole Double Resonance) and Computational (DFT and Hirshfeld-Based) Study

机译:甲基黄嘌呤(咖啡因,可可碱和茶碱)的药物相关多晶型物相互作用模式的拓扑:组合实验(〜1H-〜(14)N核四极双共振)和计算研究(基于DFT和基于Hirshfeld的研究)

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摘要

Three anhydrous methylxanthines:caffeine (1,3,7-trimethylxanthine; 1,3,7-trimethyl-1H-purine-2,6-(3H,7H)-dione) and its two metabolites theophylline (1,3-dimethylxanthine; 1,3-dimethyl-7H-purine-2,6-dione) and theobromine (3,7-dimethyl-xanthine; 3,7-dimethyl-7H-purine-2,6-dione), which reveal multifaceted therapeutic potential, have been studied experimentally in solid state by ~1H-~(14)N NMR-NQR (nuclear magnetic resonance-nuclear quadrupole resonance) double resonance (NQDR). For each compound the complete NQR spectrum consisting of 12 lines was recorded. The multiplicity of NQR lines indicates the presence of a stable β form of anhydrous caffeine at 233 K and stable form II of anhydrous theobromine at 213 K. The assignment of signals detected in NQR experiment to particular nitrogen atoms was made on the basis of quantum chemistry calculations performed for monomer, cluster, and solid at the DFT/GGA/BLYP/DPD level. The shifts due to crystal packing interactions were evaluated, and the multiplets detected by NQR were assigned to N(9) in theobromine and N(1) and N(9) in caffeine. The ordering theobromine >theophylline >caffeine site and theophylline < theobromine < caffeine according to increasing electric field gradient (EFG) at the N(1) and N(7) sites, respectively, reflects the changes in biological activity profile of compounds from the methylxanthines series (different pharmacological effects). This difference is elucidated on the basis of the ability to form intra- and intermolecular interactions (hydrogen bonds and π???π stacking interactions). The introduction of methyl groups to xanthine restricts the ability of nitrogen atoms to participate in strong hydrogen bonds; as a result, the dominating effect shifts from hydrogen bond (theobromine) to π???π stacking (caffeine). Substantial differences in the intermolecular interactions in stable forms of methylxanthines differing in methylation (site or number) were analyzed within the Hirshfeld surface-based approach. The analysis of local environment of the nitrogen nucleus permitted drawing some conclusions on the nature of the interactions required for effective processes of recognition and binding of a given methylxanthine to A_1-A_2A receptor (target for caffeine in the brain). Although the interactions responsible for linking neighboring methylxanthines molecules in crystals and methylxanthines with targets in the human organism can differ significantly, the knowledge of the topology of interactions provides reliable preliminary information about the nature of this binding.
机译:三种无水甲基黄嘌呤:咖啡因(1,3,7-三甲基黄嘌呤; 1,3,7-三甲基-1H-嘌呤-2,6-(3H,7H)-二酮)及其两个代谢产物茶碱(1,3-二甲基黄嘌呤; 1,3-二甲基-7H-嘌呤-2,6-二酮)和可可碱(3,7-二甲基黄嘌呤; 3,7-二甲基-7H-嘌呤-2,6-二酮),具有多方面的治疗潜力,已通过〜1H-〜(14)N NMR-NQR(核磁共振-核四极共振)双共振(NQDR)在固态下进行了实验研究。对于每种化合物,记录了由12条线组成的完整NQR光谱。 NQR谱线的多样性表明在233 K处存在稳定的β型无水咖啡因,在213 K处存在无水可可碱的稳定型II。在NQR实验中检测到的信号分配给特定的氮原子是基于量子化学的在DFT / GGA / BLYP / DPD级别对单体,簇和固体进行的计算。评估了由于晶体堆积相互作用而引起的位移,并将由NQR检测到的多重峰分配给可可碱中的N(9)和咖啡因中的N(1)和N(9)。分别根据N(1)和N(7)位的电场梯度(EFG)的增加,可可碱>茶碱>咖啡因位点和可可碱<可可碱<咖啡因的顺序分别反映了甲基黄嘌呤化合物的生物活性特征系列(不同的药理作用)。根据形成分子内和分子间相互作用(氢键和πππ堆积相互作用)的能力来阐明这种差异。黄嘌呤中甲基的引入限制了氮原子参与强氢键的能力。结果,主要作用从氢键(可可碱)转变为πππ堆积(咖啡因)。在基于Hirshfeld的基于表面的方法中分析了甲基黄嘌呤的稳定形式的甲基化(位点或数量)不同的分子间相互作用的显着差异。通过分析氮核的局部环境,可以得出有效的识别和结合给定的甲基黄嘌呤与A_1-A_2A受体(大脑中咖啡因的靶标)所需的相互作用性质的结论。尽管负责将晶体中的相邻甲基黄嘌呤分子和甲基黄嘌呤与人体中的靶标连接的相互作用可能存在显着差异,但相互作用拓扑的知识为这种结合的性质提供了可靠的初步信息。

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