Piñeiro Angel, Banquy Xavier, Pérez-Casas Silvia, Tovar Edgar, García Abel, Villa Alessandra, Amigo Alfredo, Mark Alan E, Costas Miguel
Laboratorio de Biofisicoquímica, Departamento de Fisicoquímica, Facultad de Química, Universidad Nacional Autónoma de México, Cd. Universitaria, México D.F. 04510, Mexico.
J Phys Chem B. 2007 May 3;111(17):4383-92. doi: 10.1021/jp0688815. Epub 2007 Apr 12.
Three host-guest systems have been characterized using surface tension (sigma), calorimetry, and molecular dynamics simulations (MD). The hosts were three native cyclodextrins (CD) and the guest the non-ionic carbohydrate surfactant octyl-beta-d-glucopyranoside. It is shown that, for any host-guest system, a rough screening of the most probable complex stoichiometries can be obtained in a model free form, using only calorimetric data. The sigma data were analyzed using a model that includes a newly proposed adsorption isotherm. The equilibrium constants for several stoichiometries were simultaneously obtained through fitting the sigma data. For alpha- and beta-CD, the predominant species is 1:1 and to a lesser extent 2:1, disregarding the existence of the 1:2. For gamma-CD, the 1:2 species dominates, the other two being also present. In an attempt to confirm these results, 10 ns MD simulations for each CD were performed using seven different starting conformations. The MD stable conformations agree with the results found from the experimental data. In one case, the spontaneous dissociation-formation of a complex was observed. Analysis of the trajectories indicates that hydrophobic interactions are primarily responsible for the formation and stability of the inclusion complexes. For the 2:1 species, intermolecular H-bonds between CD molecules result in a tight packed structure where their original truncated cone shape is lost in favor of a cylindrical geometry. Together, the results clearly demonstrate that the often used assumption of considering only a 1:1 species is inappropriate.
利用表面张力(σ)、量热法和分子动力学模拟(MD)对三种主客体体系进行了表征。主体是三种天然环糊精(CD),客体是非离子碳水化合物表面活性剂辛基-β-D-吡喃葡萄糖苷。结果表明,对于任何主客体体系,仅使用量热数据就可以以无模型的形式对最可能的配合物化学计量比进行粗略筛选。使用包含新提出的吸附等温线的模型对σ数据进行了分析。通过拟合σ数据同时获得了几种化学计量比的平衡常数。对于α-和β-环糊精,主要物种是1:1,在较小程度上是2:1,不考虑1:2的存在。对于γ-环糊精,1:2物种占主导,其他两种也存在。为了证实这些结果,使用七种不同的起始构象对每种环糊精进行了10 ns的分子动力学模拟。分子动力学稳定构象与实验数据结果一致。在一种情况下,观察到了配合物的自发解离-形成。对轨迹的分析表明,疏水相互作用是包合物形成和稳定性的主要原因。对于2:1物种,环糊精分子之间的分子间氢键导致紧密堆积的结构,其中它们原来的截顶圆锥形状消失,有利于圆柱几何形状。总之,结果清楚地表明,仅考虑1:1物种这一常用假设是不合适的。