Huskens Jurriaan, Mulder Alart, Auletta Tommaso, Nijhuis Christian A, Ludden Manon J W, Reinhoudt David N
Laboratory of Supramolecular Chemistry and Technology, MESA Institute for Nanotechnology, University of Twente, PO Box 217, 7500 AE Enschede, The Netherlands.
J Am Chem Soc. 2004 Jun 2;126(21):6784-97. doi: 10.1021/ja049085k.
A model has been described for interpreting the binding of multivalent molecules to interface-immobilized monovalent receptors through multiple, independent interactions. It is based on the concept of effective concentration, C(eff), which has been developed before for multivalent binding in solution and which incorporates effects of lengths and flexibilities of linkers between interacting sites. The model assumes: (i). the interactions are independent, (ii). the maximum number of interactions, p(max), is known, (iii). C(eff) is estimated from (simple) molecular models. Simulations of the thermodynamics and kinetics of multivalent host-guest binding to interfaces have been discussed, and competition with a monovalent competitor in solution has been incorporated as well. The model was successfully used to describe the binding of a divalent guest to self-assembled monolayers of a cyclodextrin host. The adsorption data of more complex guest-functionalized dendrimers, for which p(max) was not known beforehand, was interpreted as well. Finally, it has been shown that the model can aid to deconvolute contributions of multivalency and cooperativity to stability enhancements observed for the adsorption of multivalent molecules to interfaces.
已描述了一种模型,用于通过多个独立相互作用来解释多价分子与界面固定的单价受体的结合。它基于有效浓度C(eff)的概念,该概念之前已针对溶液中的多价结合进行了开发,并纳入了相互作用位点之间连接子的长度和柔韧性的影响。该模型假设:(i) 相互作用是独立的;(ii) 最大相互作用数p(max)是已知的;(iii) C(eff)是根据(简单)分子模型估算的。已讨论了多价主客体与界面结合的热力学和动力学模拟,并且还纳入了与溶液中单价竞争者的竞争。该模型已成功用于描述二价客体与环糊精主体自组装单分子层的结合。对于事先未知p(max)的更复杂的客体功能化树枝状大分子吸附数据也进行了解释。最后,已表明该模型有助于解卷积多价性和协同性对多价分子吸附到界面时观察到的稳定性增强的贡献。