Key Laboratory of Life-Organic Analysis of Shandong Province, School of Chemistry and Chemical Engineering, Qufu Normal University, Qufu, Shandong, 273165, China.
Key Laboratory of Life-Organic Analysis of Shandong Province, School of Chemistry and Chemical Engineering, Qufu Normal University, Qufu, Shandong, 273165, China.
Talanta. 2025 Jan 1;281:126860. doi: 10.1016/j.talanta.2024.126860. Epub 2024 Sep 10.
In consideration of deep tissue imaging and signal fidelity, fluorescent-photoacoustic (PA) dual-modal probes are much more desirable. However, dual-modal imaging of gastritis using molecular probes remains a challenge due to the harsh gastric acid environment in the stomach. Based on the positive correlation between gastritis and cell viscosity, stomach acid-stable and viscosity-activated probes could potentially diagnose gastritis. As a proof of concept, herein, a fluorescent and photoacoustic dual-modal probe (named WSP-1) is revealed for the imaging of drug-induced acute gastritis in vivo. WSP-1 exhibits viscosity-dependent fluorescence emission and photoacoustic signals. A rotatable C-C single bond is incorporated into the D-π-A structure of WSP-1, which could facilitate the formation of the twisted intramolecular charge transfer (TICT) state in a low-viscosity environment (weak fluorescence/PA signal) and the intramolecular charge transfer (ICT) state in a high-viscosity environment (strong fluorescence/PA signal). WSP-1 has demonstrated the capability to target mitochondria and can be utilized to monitor the viscosity enhancement of cells during inflammation. Most importantly, WSP-1 exhibits good optical and structural stability in gastric acid. By leveraging these desirable features of WSP-1, we have achieved fluorescent and 3D photoacoustic in situ imaging of drug-induced acute gastritis following oral administration of WSP-1.
考虑到深层组织成像和信号保真度,荧光-光声(PA)双模探针更受欢迎。然而,由于胃中的胃酸环境恶劣,使用分子探针进行胃炎的双模式成像仍然是一个挑战。基于胃炎与细胞粘度之间的正相关关系,胃酸稳定且粘度激活的探针有可能用于诊断胃炎。在此,作为概念验证,本文揭示了一种用于体内药物诱导性急性胃炎成像的荧光和光声双模探针(命名为 WSP-1)。WSP-1 表现出与粘度相关的荧光发射和光声信号。一个可旋转的 C-C 单键被引入 WSP-1 的 D-π-A 结构中,这可以促进在低粘度环境(弱荧光/PA 信号)中形成扭曲的分子内电荷转移(TICT)状态和在高粘度环境(强荧光/PA 信号)中形成分子内电荷转移(ICT)状态。WSP-1 已被证明能够靶向线粒体,并可用于监测炎症过程中细胞粘度的增强。最重要的是,WSP-1 在胃酸中表现出良好的光学和结构稳定性。利用 WSP-1 的这些理想特性,我们已经实现了 WSP-1 口服给药后药物诱导性急性胃炎的荧光和 3D 光声原位成像。