Department of Chemistry, University of Pavia, Viale Taramelli 10, Pavia, Italy.
Photochem Photobiol Sci. 2022 May;21(5):879-898. doi: 10.1007/s43630-022-00173-8. Epub 2022 Feb 21.
Recently, photoclick chemistry emerged as a powerful tool employed in several research fields, from medicinal chemistry and biology to material sciences. The growing interest in this type of chemical process is justified by the possibility to produce complex molecular systems using mild reaction conditions. However, the elevated spatio-temporal control offered by photoclick chemistry is highly intriguing, as it expands the range of applications. In this context, the light-triggered reaction of 2,5-diaryl tetrazoles with dipolarophiles emerged for its interesting features: excellent stability of the substrates, fast reaction kinetic, and the formation of a highly fluorescent product, fundamental for sensing applications. In the last years, 2,5-diaryl tetrazoles have been extensively employed, especially for bioorthogonal ligations, to label biomolecules and nucleic acids. In this review, we summarized recent applications of this interesting photoclick reaction, with a particular focus on biological fields. Moreover, we described the main limits that affect this system and current strategies proposed to overcome these issues. The general discussion here presented could prompt further optimization of the process and pave the way for the development of new original structures and innovative applications.
近年来,光点击化学作为一种强大的工具,已经应用于多个研究领域,从药物化学和生物学到材料科学。这种化学过程之所以引起越来越多的关注,是因为它可以在温和的反应条件下产生复杂的分子体系。然而,光点击化学提供的高度时空控制更具吸引力,因为它扩大了应用范围。在这种情况下,2,5-二芳基四唑与偶极体的光触发反应因其有趣的特性而脱颖而出:底物具有极好的稳定性、快速的反应动力学和形成高荧光产物,这对于传感应用至关重要。在过去的几年中,2,5-二芳基四唑已被广泛应用,特别是用于生物正交连接,以标记生物分子和核酸。在这篇综述中,我们总结了这种有趣的光点击反应的最新应用,特别关注生物领域。此外,我们还描述了影响该体系的主要限制因素以及目前提出的克服这些问题的策略。这里提出的一般性讨论可以促使进一步优化该过程,并为开发新的原始结构和创新应用铺平道路。