Jagiellonian Centre for Experimental Therapeutics (JCET), Jagiellonian University, 14 Bobrzynskiego Str., 30-348 Krakow, Poland.
Jagiellonian University in Kraków, Doctoral School of Exact and Natural Sciences, 11 Lojasiewicza Street, 30-348 Krakow, Poland.
ACS Sens. 2024 Feb 23;9(2):995-1003. doi: 10.1021/acssensors.3c02576. Epub 2024 Feb 9.
For Raman hyperspectral detection and imaging in live cells, it is very desirable to create novel probes with strong and unique Raman vibrations in the biological silent region (1800-2800 cm). The use of molecular probes in Raman imaging is a relatively new technique in subcellular research; however, it is developing very rapidly. Compared with the label-free method, it allows for a more sensitive and selective visualization of organelles within a single cell. Biological systems are incredibly complex and heterogeneous. Directly visualizing biological structures and activities at the cellular and subcellular levels remains by far one of the most intuitive and powerful ways to study biological problems. Each organelle plays a specific and essential role in cellular processes, but importantly for cells to survive, mitochondrial function must be reliable. Motivated by earlier attempts and successes of biorthogonal chemical imaging, we develop a tool supporting Raman imaging of cells to track biochemical changes associated with mitochondrial function at the cellular level in an model. In this work, we present a newly synthesized highly sensitive RAR-BR Raman probe for the selective imaging of mitochondria in live endothelial cells.
对于活细胞中的拉曼光谱学检测和成像,人们非常希望创造出具有强且独特的拉曼振动的新型探针,这些振动位于生物静默区(1800-2800cm)内。在亚细胞研究中,使用分子探针进行拉曼成像,这是一种相对较新的技术,但发展非常迅速。与无标记方法相比,它可以更敏感和选择性地可视化单个细胞内的细胞器。生物系统极其复杂和异质。直接可视化细胞和亚细胞水平的生物结构和活动,仍然是研究生物问题最直观和最有力的方法之一。每个细胞器在细胞过程中都起着特定且必不可少的作用,但重要的是,为了使细胞存活,线粒体功能必须可靠。受早期生物正交化学成像尝试和成功的启发,我们开发了一种支持细胞拉曼成像的工具,以在模型中追踪与线粒体功能相关的细胞水平的生化变化。在这项工作中,我们提出了一种新合成的高度灵敏的 RAR-BR 拉曼探针,用于在活内皮细胞中选择性地对线粒体进行成像。