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通过胶束结合的穴状配体实现客体识别。

Guest recognition with micelle-bound cavitands.

作者信息

Schramm Michael P, Hooley Richard J, Rebek Julius

机构信息

The Skaggs Institute for Chemical Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, Mail MB 26, La Jolla, California 92037, USA.

出版信息

J Am Chem Soc. 2007 Aug 8;129(31):9773-9. doi: 10.1021/ja0723378. Epub 2007 Jul 18.

Abstract

We report that a benzimidazole cavitand is incorporated in aqueous phosphocholine (PC) micelles, folds into the vase conformation, and functions as small-molecule host. As a micelle-bound host it has the ability to sequester selective hydrophobic guest "anchors" into its interior. These anchors include cycloalkanes, adamantanes, and nitrogen heterocycles that compete favorably with the large excess of PC alkyl side-chains that make up the micelle interior. The adamantyl anchor was further functionalized with a fluorophore, and in another instance a dipeptide and both guests retain their recognition properties with the micelle-bound cavitand. Additionally, we report that variations in the cavitand periphery and rim are well-tolerated under our experimental conditions. We find that enhanced binding toward certain guests in both micelles as well as in solution occurs in response to titration with base; this previously unknown property of benzimidazole cavitands is reported in detail.

摘要

我们报道了一种苯并咪唑穴状配体被纳入水性磷胆碱(PC)胶束中,折叠成花瓶构象,并作为小分子主体发挥作用。作为一种与胶束结合的主体,它能够将选择性疏水客体“锚定基团”隔离在其内部。这些锚定基团包括环烷烃、金刚烷和氮杂环,它们能与构成胶束内部的大量过量PC烷基侧链形成有利竞争。金刚烷基锚定基团进一步用荧光团进行了功能化,在另一个实例中,二肽和两种客体与胶束结合的穴状配体都保留了它们的识别特性。此外,我们报道在我们的实验条件下,穴状配体的外围和边缘的变化具有良好的耐受性。我们发现,用碱滴定会导致在胶束以及溶液中对某些客体的结合增强;本文详细报道了苯并咪唑穴状配体这一此前未知的性质。

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