Blencowe Anton, Hayes Wayne
School of Chemistry, The University of Reading, Whiteknights, Reading, Berkshire, UKRG6 6AD.
Soft Matter. 2005 Aug 5;1(3):178-205. doi: 10.1039/b501989c.
Many different reagents and methodologies have been utilised for the modification of synthetic and biological macromolecular systems. In addition, an area of intense research at present is the construction of hybrid biosynthetic polymers, comprised of biologically active species immobilised or complexed with synthetic polymers. One of the most useful and widely applicable techniques available for functionalisation of macromolecular systems involves indiscriminate carbene insertion processes. The highly reactive and non-specific nature of carbenes has enabled a multitude of macromolecular structures to be functionalised without the need for specialised reagents or additives. The use of diazirines as stable carbene precursors has increased dramatically over the past twenty years and these reagents are fast becoming the most popular photophors for photoaffinity labelling and biological applications in which covalent modification of macromolecular structures is the basis to understanding structure-activity relationships. This review reports the synthesis and application of a diverse range of diazirines in macromolecular systems.
许多不同的试剂和方法已被用于合成和生物大分子体系的修饰。此外,目前一个活跃的研究领域是构建杂化生物合成聚合物,它由固定在合成聚合物上或与合成聚合物复合的生物活性物质组成。可用于大分子体系功能化的最有用且应用最广泛的技术之一涉及无差别卡宾插入过程。卡宾的高反应活性和非特异性使得众多大分子结构能够在无需特殊试剂或添加剂的情况下实现功能化。在过去二十年中,作为稳定卡宾前体的重氮环丙烷的使用急剧增加,这些试剂正迅速成为光亲和标记和生物应用中最受欢迎的光致发光体,在这些应用中,大分子结构的共价修饰是理解构效关系的基础。本综述报道了多种重氮环丙烷在大分子体系中的合成与应用。