Schultz Constanze, Popp Jürgen
Leibniz Institute of Photonic Technology (Leibniz-IPHT), Member of Leibniz Health Technologies, Member of the Leibniz Center for Photonics in Infection Research (LPI), Albert-Einstein-Straße 9, 07745, Jena, Germany.
Institute of Physical Chemistry (IPC) and Abbe Center of Photonics (ACP), Member of the Leibniz Center for Photonics in Infection Research (LPI), Friedrich Schiller University Jena, Helmholtzweg 4, 07743, Jena, Germany.
Anal Bioanal Chem. 2025 Aug 13. doi: 10.1007/s00216-025-06029-1.
Raman imaging in the wavenumber silent region emerged around 15 years ago as a powerful tool for visualizing biomolecules and synthetic compounds in complex environments with minimal spectral and biological interference. Since then, the field has advanced from simple proof-of-concept studies using available tags to the rational design of highly efficient Raman labels with sharp silent region signatures, now applied to real biological and biomedical questions. This review traces the evolution from the versatility of label-free Raman to the increasing relevance of labeled strategies, emphasizing how tag design influences functionality, application, and impact. We highlight recent progress in both the synthesis and deployment of tags tailored for specific cellular targets and processes and discuss the emerging need for labeled strategies to meet the demands of sensitivity, multiplexing, and biocompatibility in complex systems. Through this design-to-application perspective, the review provides a comprehensive overview of the current capabilities and significant applications, and identifies key future directions to fully exploit the potential of silent region Raman imaging.
大约15年前,波数沉默区域的拉曼成像作为一种强大的工具应运而生,用于在复杂环境中可视化生物分子和合成化合物,同时将光谱干扰和生物干扰降至最低。从那时起,该领域已从使用现有标签的简单概念验证研究发展到合理设计具有清晰沉默区域特征的高效拉曼标签,如今这些标签已应用于实际的生物学和生物医学问题。本综述追溯了从无标记拉曼的多功能性到标记策略日益重要的演变过程,强调了标签设计如何影响功能、应用和影响。我们重点介绍了针对特定细胞靶点和过程定制的标签在合成和应用方面的最新进展,并讨论了为满足复杂系统中灵敏度、多重检测及生物相容性需求而对标记策略产生的新需求。通过这种从设计到应用的视角,本综述全面概述了当前的能力和重要应用,并确定了充分发挥沉默区域拉曼成像潜力的关键未来方向。