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Sucrose Dependence of Solute Retention on Human Serum Albumin Stationary Phase: Hydrophobic Effect and Surface Tension Considerations

机译:溶质保留对人类血清白蛋白固定相的蔗糖依赖性:疏水作用和表面张力的考虑

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In a chromatographic system using human serum albumin (HSA) as a stationary phase, D,L dansyl amino acids as solutes, and sucrose as a mobile-phase modifier, a study on the surface tension effect of sugar on compound retention was carried out by varying the salting-out agent concentration c and the column temperature T. The thermodynamic parameters for solute transfer from the mobile to the stationary phase were determined from linear van't Hoff plots. An enthalpy-entropy compensation study revealed that the type of interaction between solute and HSA was independent of the molecular structare of the dansyl amino acids and the mobile-phase composition. An analysis of the experimental variations in the retention factor and the enantioselectivity values with c was performed using a theoretical model. It was shown that the decrease in solute retention accompanying the sucrose concentration increase was principally governed by a structural rearrangement of the binding cavity due to the increased surface tension effects. The cavity apolar residues were assumed to fold Out of contact with the medium in order to reduce the surface area accessible to sucrose molecules, thus implying a restriction of the curvature radius of the cavity. Such behavior caused a decrease in the hydrophobic interaction for ligand binding on HSA explaining the observed thermodynamic parameter trends over the sucrose concentration range.
机译:在以人血清白蛋白(HSA)为固定相,D,L丹磺酰基氨基酸为溶质,蔗糖为流动相改性剂的色谱系统中,糖的表面张力对化合物保留的影响的研究是通过改变溶盐剂浓度c和柱温T。从线性van't Hoff图确定溶质从流动相到固定相的热力学参数。焓-熵补偿研究表明,溶质与HSA之间的相互作用类型与丹酰氨基酸的分子结构和流动相组成无关。使用理论模型对保留因子和对映选择性值随c的实验变化进行了分析。结果表明,随着蔗糖浓度的增加,溶质保留的减少主要是由于表面张力效应的增加,结合腔的结构重排所决定的。为了减少蔗糖分子可及的表面积,假定空腔的非极性残基折叠而与介质不接触,从而暗示了空腔曲率半径的限制。此类行为导致配体与HSA结合的疏水相互作用降低,这说明了在蔗糖浓度范围内观察到的热力学参数趋势。

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