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Staudinger Ligation as a Method for Bioconjugation

机译:施陶丁格结扎法作为生物共轭方法

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摘要

In 1919 the German chemist Hermann Staudinger was the first to describe the reaction between an azide and a phosphine. It was not until recently, however, that Bertozzi and co-workers recognized the potential of this reaction as a method for bioconjugation and transformed it into the so-called Staudinger ligation. The bio-orthogonal character of both the azide and the phosphine functions has resulted in the Staudinger ligation finding numerous applications in various complex biological systems. For example, the Staudinger ligation has been utilized to label glycans, lipids, DNA, and proteins. Moreover, the Staudinger ligation has been used as a synthetic method to construct glycopeptides, microarrays, and functional biopolymers. In the emerging field of bio-orthogonal ligation strategies, the Staudinger ligation has set a high standard to which most of the new techniques are often compared. This Review summarizes recent developments and new applications of the Staudinger ligation.
机译:1919年,德国化学家赫尔曼·施陶丁格(Hermann Staudinger)率先描述了叠氮化物与膦的反应。但是直到最近,Bertozzi和他的同事们才意识到这种反应作为一种生物缀合方法的潜力,并将其转化为所谓的Staudinger结扎法。叠氮化物和膦功能的生物正交特征已导致施陶丁格结扎法在各种复杂的生物系统中发现了许多应用。例如,施陶丁格连接已用于标记聚糖,脂质,DNA和蛋白质。此外,施陶丁格连接已被用作构建糖肽,微阵列和功能性生物聚合物的合成方法。在新兴的生物正交结扎策略领域中,施陶丁格结扎法已树立了很高的标准,经常将大多数新技术与之进行比较。这篇综述总结了施陶丁格结扎术的最新发展和新应用。

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