Centre for Inflammation Research, The University of Edinburgh, Edinburgh, EH16 4TJ, UK.
Centre for Molecular Nanometrology, The University of Strathclyde, Glasgow, G1 1RD, UK.
Angew Chem Int Ed Engl. 2022 Aug 22;61(34):e202204788. doi: 10.1002/anie.202204788. Epub 2022 Jul 21.
Recent advances in optical bioimaging have prompted the need for minimal chemical reporters that can retain the molecular recognition properties and activity profiles of biomolecules. As a result, several methodologies to reduce the size of fluorescent and Raman labels to a few atoms (e.g., single aryl fluorophores, Raman-active triple bonds and isotopes) and embed them into building blocks (e.g., amino acids, nucleobases, sugars) to construct native-like supramolecular structures have been described. The integration of small optical reporters into biomolecules has also led to smart molecular entities that were previously inaccessible in an expedite manner. In this article, we review recent chemical approaches to synthesize miniaturized optical tags as well as some of their multiple applications in biological imaging.
近年来,光学生物成像技术的发展促使人们需要开发出能够保留生物分子的分子识别特性和活性特征的最小化学报告物。因此,已经描述了几种将荧光和拉曼标签的尺寸减小到几个原子(例如,单个芳基荧光团、拉曼活性三键和同位素)并将其嵌入构建块(例如,氨基酸、核苷碱基、糖)以构建类似天然的超分子结构的方法。将小型光学报告物集成到生物分子中也导致了以前以快速方式无法获得的智能分子实体。在本文中,我们综述了最近用于合成小型化光学标签的化学方法,以及它们在生物成像中的一些应用。