多重连接环糊精-芳香混合物:帽、铰链和夹子

IF 1.2 4区 化学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Tania Neva , Carmen Ortiz Mellet , José M. García Fernández , Juan M. Benito
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引用次数: 11

摘要

摘要笼型结构中塑造和识别元件的明智组合代表了一种强大的策略,可以获得具有定制受体特性和形成超分子组装体的可控能力的分子器件。芳香模块对这些努力特别有吸引力:它们可以发挥刚性壁的作用,在预先存在的隔间之间建立永久的空腔,折叠屏幕,和/或作为促进非共价自相互作用以及与第三物种关联的功能部件,允许实现多个层次的组织。环糊精领域从与芳香族构建块的融合中受益匪浅,产生了具有更广泛性质和应用的杂化物。精密化学的进步进一步使人们能够以前所未有的控制水平高效制备多连接帽、铰链或夹子环糊精芳香嵌合体,这转化为超分子催化、自组装或基因递送等领域的新进展。这篇综述文章专门关注这类化合物,强调了结构、超分子性质和在目标应用中的性能之间的密切关系。图形摘要
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiply–linked cyclodextrin–aromatic hybrids: Caps, hinges and clips

The judicious combination of shaping and recognition elements in cage-type architectures represents a powerful strategy to access molecular devices with tailored receptor properties and controlled abilities to form supramolecular assemblies. Aromatic modules are particularly attractive for these endeavors: they can play the role of rigid walls to build permanent cavities, folding screens between preexisting compartments and/or act as functional components promoting noncovalent self-interactions as well as associations with third species, allowing several levels of organization to be implemented. The field of cyclodextrins has enormously benefitted from the amalgamation with aromatic building blocks to give birth to hybrids with a much broader spectrum of properties and applications. The progress in precision chemistry has further enabled the efficient preparation of multiply-linked cap, hinge or clip cyclodextrin-aromatic chimeras with unprecedented level of control, which has translated into new developments in fields like supramolecular catalysis, self-assembly or gene delivery. This review article focuses specifically in these type of compounds, highlighting the intimate relationship between structure, supramolecular properties and performance in the target application.

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来源期刊
Journal of Carbohydrate Chemistry
Journal of Carbohydrate Chemistry 化学-生化与分子生物学
CiteScore
2.10
自引率
0.00%
发文量
20
审稿时长
1 months
期刊介绍: The Journal of Carbohydrate Chemistry serves as an international forum for research advances involving the chemistry and biology of carbohydrates. The following aspects are considered to fall within the scope of this journal: -novel synthetic methods involving carbohydrates, oligosaccharides, and glycoconjugates- the use of chemical methods to address aspects of glycobiology- spectroscopic and crystallographic structure studies of carbohydrates- computational and molecular modeling studies- physicochemical studies involving carbohydrates and the chemistry and biochemistry of carbohydrate polymers.
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