Key Laboratory of Pesticide and Chemical Biology of Ministry of Education, College of Chemistry, Central China Normal University, 152 Luoyu Road, Wuhan 430079, China.
Anal Chem. 2022 Feb 1;94(4):2042-2047. doi: 10.1021/acs.analchem.1c04082. Epub 2022 Jan 21.
As a CO donor, CORM-3 is widely used nowadays to study the role of CO as a gasotransmitter and potential drug in biological systems. Developing methods to detect CORM-3 in live systems will contribute to these studies. Herein, we developed a novel Pd-free near-infrared fluorescent probe for detecting CORM-3 both in live cells and . We found that the allyl ether group in could be cleaved by CORM-3 directly via an isomerization process to release the NIR fluorophore QCy7 and cause distinct NIR fluorescence changes. Importantly, responds quickly and shows high sensitivity and selectivity for CORM-3 with NIR fluorescence turn-on changes at 743 nm (λ = 662 nm), and when the excitation wavelength is 450 nm, can respond to CORM-3 with ratiometric fluorescence signals at 743/605 nm. Moreover, can track CORM-3 in live cells and animals with excellent imaging performance. Thus, this work not only provides a powerful new tool for CORM-3 detection in live systems but also provides a new method to construct CORM-3 probes by allyl ether isomerization.
作为 CO 的供体,目前 CORM-3 被广泛用于研究 CO 作为气体递质和潜在药物在生物系统中的作用。开发在活系统中检测 CORM-3 的方法将有助于这些研究。在此,我们开发了一种新型的无钯近红外荧光探针 ,用于检测活细胞和 中的 CORM-3。我们发现, 中的烯丙基醚基团可以通过异构化过程直接被 CORM-3 裂解,释放出近红外荧光团 QCy7,并导致明显的近红外荧光变化。重要的是, 对 CORM-3 具有快速响应,且对 CORM-3 具有高灵敏度和选择性,在 743nm(λ = 662nm)处有近红外荧光开启变化,当激发波长为 450nm 时, 可以以 743/605nm 的比率荧光信号响应 CORM-3。此外, 可以在活细胞和动物中跟踪 CORM-3,具有出色的成像性能。因此,这项工作不仅为在活系统中检测 CORM-3 提供了一种强大的新工具,而且还提供了一种通过烯丙基醚异构化构建 CORM-3 探针的新方法。