首页> 外文期刊>Israel journal of chemistry >Calix5arene Self‐Folding Cavitands: A New Family of Bio‐Inspired Receptors with Enhanced Induced Fit Behavior
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Calix5arene Self‐Folding Cavitands: A New Family of Bio‐Inspired Receptors with Enhanced Induced Fit Behavior

机译:Calix5arene 自折叠 Cavitands:具有增强诱导 FIT 行为的生物启发受体新家族

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Abstract Self‐folding cavitands represent the quintessential form of bioinspired synthetic receptors, featuring deep hydrophobic cavities that engage in host‐guest chemistry reminiscent of that operating in biomolecules. Although remarkable proof‐of‐concept applications have been reported, the narrow and rigid spaces of the legacy resorcin4arene derived hosts constitute a liability towards the development of specific applications in catalysis, sensing or sequestration. While notable efforts to expand the size of the cavities have been reported, the development of confined spaces reproducing the highly adaptable nature of biological receptors is a largely unaddressed issue. This review summarizes the development of a new family of calix5arene derived self‐folding cavitands displaying enhanced induced fit and conformational selection phenomena. Our approach capitalizes on hydrogen bonding preorganization rather than the covalent restriction approaches customary of conventional supramolecular chemistry.
机译:摘要 自折叠空腔代表了生物启发合成受体的典型形式,具有深疏水空腔,其作用是主客体化学,让人想起在生物分子中运作的化学反应。尽管已经报道了显着的概念验证应用,但传统间苯二酚[4]芳烃衍生宿主的狭窄和刚性空间构成了催化、传感或隔离中特定应用开发的不利因素。虽然已经报道了扩大空腔大小的显着努力,但复制生物受体高度适应性的密闭空间的发展在很大程度上是一个未解决的问题。本文总结了一个新的 calix[5]arene 衍生的自折叠 cavitands 家族的发展,显示出增强的诱导拟合和构象选择现象。我们的方法利用氢键预组织,而不是传统超分子化学惯用的共价限制方法。

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