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6-对甲苯胺基萘-2-磺酸盐与β-环糊精的相互作用

Interaction of 6-p-toluidinylnaphthalene-2-sulfonate with beta-cyclodextrin.

作者信息

Nishijo J, Nagai M, Yasuda M, Ohno E, Ushiroda Y

机构信息

Kobe Pharmaceutical University, Japan.

出版信息

J Pharm Sci. 1995 Dec;84(12):1420-6. doi: 10.1002/jps.2600841207.

Abstract

The interaction of 6-p-toluidinylnaphthalene-2-sulfonate (TNS) with beta-cyclodextrin was investigated in 0.1 M phosphate buffer at pH 7.4 by fluorescence spectroscopy. Using the fluorescence enhancement of TNS in the presence of beta-cyclodextrin, the thermodynamic parameters for the formation of two kinds of the inclusion complex (molar ratio of beta-cyclodextrin to TNS = 1:1 and 2:1) were determined as follows: delta G degree 1 (1:1 complex) = -20.0 kJ mol-1 at 25 degrees C, delta H degree 1 = -19.6 kJ mol-1, delta S degree 1 = -1.7 J mol-1 K-1, delta G degree 2 (2:1 complex) at 25 degrees C = -6.14 kJ mol-1, delta H degree 2 = -2.80 kJ mol-1, delta S degree 2 = 16.7 J mol-1 K-1. From the thermodynamic parameters, the main driving force for the 1:1 inclusion complex formation was considered to be the van der Waals-London dispersion force, while the contribution of the hydrophobic interaction was small. Also, the hydrogen bonding was suggested to contribute to the inclusion complex formation. The main driving force for the 2:1 inclusion complex formation was the hydrophobic interaction. Also, from the measurements of proton nuclear magnetic resonance spectra and studies with Corey-Pauling-Koltun atomic models, the probable structure was determined and discussed in connection with the thermodynamic parameters.

摘要

通过荧光光谱法研究了在pH 7.4的0.1 M磷酸盐缓冲液中6-对甲苯胺基萘-2-磺酸盐(TNS)与β-环糊精的相互作用。利用β-环糊精存在时TNS的荧光增强,测定了两种包合物(β-环糊精与TNS的摩尔比 = 1:1和2:1)形成的热力学参数如下:25℃时,ΔG°1(1:1络合物) = -20.0 kJ mol-1,ΔH°1 = -19.6 kJ mol-1,ΔS°1 = -1.7 J mol-1 K-1,25℃时,ΔG°2(2:1络合物) = -6.14 kJ mol-1,ΔH°2 = -2.80 kJ mol-1,ΔS°2 = 16.7 J mol-1 K-1。根据这些热力学参数,认为1:1包合物形成的主要驱动力是范德华-伦敦色散力,而疏水相互作用的贡献较小。此外,有人提出氢键对包合物的形成也有贡献。2:1包合物形成的主要驱动力是疏水相互作用。此外,通过质子核磁共振谱的测量以及使用科里-保林-科尔图恩原子模型的研究,确定了可能的结构,并结合热力学参数进行了讨论。

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