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多站点结合药物和天然产物在一个熵有利的,杂配位受体中。

Multisite Binding of Drugs and Natural Products in an Entropically Favorable, Heteroleptic Receptor.

机构信息

Department of Chemistry , University of Cambridge , Cambridge CB2 1EW , United Kingdom.

出版信息

J Am Chem Soc. 2019 Jun 5;141(22):9087-9095. doi: 10.1021/jacs.9b03776. Epub 2019 May 22.

Abstract

The cavities of artificial receptors are defined by how their components fit together. The encapsulation of specific molecules can thus be engineered by considering geometric principles; however, intermolecular interactions and steric fit scale with receptor size, such that the ability to bind multiple guests from a specific class of compounds remains a current challenge. By employing metal-organic self-assembly, we have prepared a triangular prism from two different ligands that is capable of binding more than 20 different natural products, drugs, and steroid derivatives within its prolate cavity. Encapsulation inflates the host, enhancing its ability to bind other guests in peripheral pockets and thus enabling our system to bind combinations of different drug and natural product cargoes in different locations simultaneously. This new mode of entropically favorable self-assembly thus enables central encapsulation to amplify guest-binding events around the periphery of an artificial receptor.

摘要

人工受体的空腔由其组件的组合方式决定。因此,可以通过考虑几何原理来设计特定分子的封装;然而,分子间相互作用和空间位阻与受体大小成比例,因此,从特定化合物类别中结合多个客体仍然是当前的挑战。通过采用金属有机自组装,我们使用两种不同的配体制备了一个三角棱柱,该棱柱能够在其拉长的空腔中结合 20 多种不同的天然产物、药物和甾体衍生物。封装会使主体膨胀,增强其结合外围口袋中其他客体的能力,从而使我们的系统能够同时在不同位置结合不同药物和天然产物货物的组合。这种新的熵有利自组装模式使得中心封装能够放大人工受体外围的客体结合事件。

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