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桥连β-环糊精三聚体的自包合和解离

Self-Inclusion and Dissociation of a Bridging β-Cyclodextrin Triplet.

作者信息

Gao Bo, Wang Gengxin, Li Bao, Wu Lixin

机构信息

State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun 130012, P. R. China.

出版信息

ACS Omega. 2020 Mar 31;5(14):8127-8136. doi: 10.1021/acsomega.0c00363. eCollection 2020 Apr 14.

Abstract

To understand the self-inclusion and the dissociation in a branched β-cyclodextrin (CD) system, we designed and synthesized a β-CD trimer in which each CD group is connected to one of bridging arms of a planar triphenylbenzene core through a CuAAC click reaction. Only one rather than two or all of the three host CDs was demonstrated to be in a self-including state in water, while no self-inclusion was observed to occur in dimethylsulfoxide (DMSO) via the characterization of H and NOESY NMR spectra. The configuration structures of the CD groups in the self-included state were evaluated, and the dissociation to free state in water was investigated under various conditions like heating, increased acidity, and discharging versus the addition of competitive guests. While raised temperature and increased acidity did not break the self-inclusion, two adamantane guest molecules were found to show capability in driving the equilibrium to get back to free state against the self-inclusion. The inclusion process of the added guests was believed to involve in the dissociation of the self-inclusion and the occupation of the guests in CD cavity. The results of host-guest interaction study indicated that the stable combination of guests was favorable for blocking the structural overturning of glucose toward trapping the bridging group into the cavity.

摘要

为了理解支链β-环糊精(CD)体系中的自包结和离解现象,我们设计并合成了一种β-环糊精三聚体,其中每个CD基团通过铜催化的叠氮-炔环加成(CuAAC)点击反应与平面三苯基苯核心的一个桥连臂相连。通过氢核磁共振(H NMR)和核Overhauser效应光谱(NOESY NMR)表征发现,在水中只有一个而非三个主体CD中的两个或全部处于自包结状态,而在二甲基亚砜(DMSO)中未观察到自包结现象。评估了自包结状态下CD基团的构型结构,并研究了在加热、酸度增加以及添加竞争性客体与释放等各种条件下其在水中向游离状态的离解情况。虽然升高温度和增加酸度并未打破自包结,但发现两个金刚烷客体分子能够促使平衡向游离状态转变以对抗自包结。据信,添加客体的包结过程涉及自包结的离解以及客体在CD空腔中的占据。主客体相互作用研究结果表明,客体的稳定结合有利于阻止葡萄糖的结构翻转,从而将桥连基团捕获到空腔中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2ae/7161068/78f8b84d7fad/ao0c00363_0001.jpg

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