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笼效应和溶剂对基态下3-吡啶酮/3-羟基吡啶互变异构平衡的影响:在环糊精和二元溶剂中的研究

Caging and solvent effects on the tautomeric equilibrium of 3-pyridone/3-hydroxypyridine in the ground state: a study in cyclodextrins and binary solvents.

作者信息

Abou-Zied Osama K, Al-Shihi Othman I K

机构信息

Department of Chemistry, Faculty of Science, Sultan Qaboos University, P.O. Box 36, Muscat, Postal Code 123, Sultanate of Oman.

出版信息

Phys Chem Chem Phys. 2009 Jul 14;11(26):5377-83. doi: 10.1039/b823405a. Epub 2009 Apr 20.

Abstract

The tautomeric equilibrium between 3-pyridone (3Py) and 3-hydroxypyridine (3HP) shows characteristic absorption peaks for the zwitterion form of 3Py in water that may be used as a probe of the hydrophobic nature inside macromolecules such as proteins and other biologically related systems. We studied this equilibrium in the ground state in aqueous cyclodextrins (CDs) and in binary solvent mixtures of 1,4-dioxane and water by absorption spectroscopy, and by ab initio calculations. Upon the addition of alpha-CD or beta-CD to an aqueous solution of the 3Py/3HP system, the absorbance intensity of the zwitterion tautomer decreases with a concomitant increase in the intensity of the enol tautomer of 3HP. The results reflect the nature of the tautomeric equilibrium and point to the hydrophobic environment inside the CD cavities. The effect of inclusion is noticeably less in the case of alpha-CD. This is attributed to the small cavity size of alpha-CD which sustains only partial inclusion. Upon the addition of gamma-CD, the intensity of the zwitterion tautomer slightly increased over that in water which is attributed to the direct interaction between the charged sides of the tautomer with the outer primary or secondary hydroxyls of the glycopyranose units of gamma-CD. This interaction is a result of the large cavity size of gamma-CD which does not support a stable complex. The largest caging effect was observed in 2,6-di-O-methyl-beta-CD (DMbeta-CD) which is an indication of a more hydrophobic environment around the guest. The large hydrophobicity of DMbeta-CD is due to the presence of the two methyl groups in the beta-CD derivative which reduce the amount of water inside the cavity upon encapsulation. In the binary mixtures of 1,4-dioxane and water, the change in the absorbance intensity of the enol and the zwitterion tautomers was analyzed quantitatively and three water molecules were found to solvate the polar centers of each tautomer. Ab initio calculations of the solvation of both tautomers by two and three water molecules were performed at the MP2/6-31++G(d,p) level. The calculations show that three water molecules are necessary to solvate the polar centers of each tautomer in a water network pattern. The results presented here suggest that the 3Py/3HP system represents a potentially useful new photophysical probe for supramolecular structures, particularly those involving inclusion.

摘要

3-吡啶酮(3Py)和3-羟基吡啶(3HP)之间的互变异构平衡在水中显示出3Py两性离子形式的特征吸收峰,可作为蛋白质等大分子以及其他生物相关体系内部疏水性质的探针。我们通过吸收光谱法以及从头算计算,研究了在水相环糊精(CDs)中以及1,4-二氧六环与水的二元溶剂混合物中基态下的这种平衡。向3Py/3HP体系的水溶液中加入α-环糊精或β-环糊精后,两性离子互变异构体的吸光度强度降低,同时3HP的烯醇互变异构体强度增加。结果反映了互变异构平衡的性质,并表明了环糊精腔内的疏水环境。在α-环糊精的情况下,包合作用的影响明显较小。这归因于α-环糊精的腔尺寸较小,只能维持部分包合。加入γ-环糊精后,两性离子互变异构体的强度比在水中略有增加,这归因于互变异构体的带电部分与γ-环糊精吡喃葡萄糖单元的外部伯羟基或仲羟基之间的直接相互作用。这种相互作用是由于γ-环糊精的腔尺寸较大,无法形成稳定的络合物。在2,6-二-O-甲基-β-环糊精(DMβ-CD)中观察到最大的笼效应,这表明客体周围存在更疏水的环境。DMβ-CD的大疏水性归因于β-环糊精衍生物中两个甲基的存在,它们在包封时减少了腔内的水量。在1,4-二氧六环与水的二元混合物中,对烯醇和两性离子互变异构体的吸光度强度变化进行了定量分析,发现三个水分子溶剂化每个互变异构体的极性中心。在MP2/6-31++G(d,p)水平上对两种互变异构体被两个和三个水分子溶剂化进行了从头算计算。计算表明,需要三个水分子以水网络模式溶剂化每个互变异构体的极性中心。这里给出的结果表明,3Py/3HP体系是一种潜在有用的新型光物理探针,可用于超分子结构,特别是那些涉及包合作用的结构。

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