Kumprecht Lukás, Budesínský Milos, Vondrásek Jirí, Vymetal Jirí, Cerný Jirí, Císarová Ivana, Brynda Jirí, Herzig Vladimír, Koutník Petr, Závada Jirí, Kraus Tomás
Institute of Organic Chemistry and Biochemistry AS CR, v.v.i. Flemingovo nám. 2, 166 10 Praha 6, Czech Republic.
J Org Chem. 2009 Feb 6;74(3):1082-92. doi: 10.1021/jo802139s.
The rigid duplex cyclodextrin 6 composed of two alpha-cyclodextrin macrocycles connected with two disulfide bonds in "transannular" (C6(I), C6(IV)) positions was prepared from partially debenzylated alpha-cyclodextrin 1 in four steps in 73% overall yield. In the last key step involving oxidative coupling of the thiol 5, predominance of the target duplex 6 can be attained under conditions of thermodynamic control. The structure of duplex cyclodextrin was established by MS as well as 2-D NMR methods and confirmed by a single-crystal X-ray analysis. The ability of the duplex cyclodextrin 6 to bind alpha,omega-alkanediols (C9-C14) and 1-alkanols (C9 and C10) was studied by isothermal titration calorimetry in aqueous solutions. The stability constants of the complexes gradually increase with the alkyl chain length and reach an unprecedently high value of K = 8.6 x 10(9) M(-1) for 1,14-tetradecanediol. It was found that the doubly bridged dimer 6 exhibits higher binding affinity toward the series of alpha,omega-alkanediols than the singly bridged analogue 10 by about 2 orders of magnitude in K (M(-1)) or 3.1-3.3 kcal/mol in deltaG(o), the enhancement being due to enthalpic factors. Theoretical calculations using DFT-D methods suggest that the enthalpic contribution stems from dispersion interactions.
由两个α-环糊精大环在“跨环”(C6(I),C6(IV))位置通过两个二硫键连接而成的刚性双环糊精6,由部分脱苄基的α-环糊精1经四步反应制备,总产率为73%。在涉及硫醇5氧化偶联的最后关键步骤中,在热力学控制条件下可实现目标双环糊精6的优势。通过质谱以及二维核磁共振方法确定了双环糊精的结构,并通过单晶X射线分析得到证实。通过等温滴定量热法研究了双环糊精6在水溶液中结合α,ω-链烷二醇(C9 - C14)和1-链烷醇(C9和C10)的能力。配合物的稳定常数随着烷基链长度逐渐增加,对于1,14-十四烷二醇达到了前所未有的高值K = 8.6×10⁹ M⁻¹。发现双桥联二聚体6对一系列α,ω-链烷二醇的结合亲和力比单桥联类似物10在K(M⁻¹)方面高约2个数量级,在ΔG⁰方面高3.1 - 3.3 kcal/mol,这种增强归因于焓因素。使用DFT-D方法的理论计算表明,焓贡献源于色散相互作用。