Yue Lizhou, Huang Huawei, Li Guofang, Chen Zehua, Lin Weiying
Institute of Optical Materials and Chemical Biology, Guangxi Key Laboratory of Electrochemical Energy Materials, School of Chemistry and Chemical Engineering, Guangxi University, Nanning 530004, Guangxi, P. R. China.
Anal Chem. 2023 Dec 12;95(49):18029-18038. doi: 10.1021/acs.analchem.3c02372. Epub 2023 Nov 29.
Dual-mode imaging of fluorescence-photoacoustics has emerged as a promising technique for biomedical applications. However, conventional dual-mode imaging is based on single-wavelength excitation, which often results in opposing fluorescence and photoacoustic signals due to competing photophysical processes in one agent, rendering the maximization of both signals infeasible. To meet this challenge, we herein propose a new strategy by using the dual-excitation approach, where one excitation wavelength generates a fluorescence signal and the other produces a photoacoustic signal, thus achieving simultaneous maximization of both signals in one fluorescence-photoacoustic molecule. Based on this strategy, three dye molecules were employed for comparison, and it was surprising to find that dye with two types of excitation wavelengths could generate fluorescence and photoacoustic signals, respectively. Furthermore, this strategy was successfully implemented in dual-mode imaging of rheumatoid arthritis mice. Importantly, this study emphasizes a new design guideline for the maximization of fluorescence-photoacoustic signals by using dual-wavelength-independent excitation.
荧光-光声双模成像已成为一种很有前景的生物医学应用技术。然而,传统的双模成像基于单波长激发,由于一种试剂中存在相互竞争的光物理过程,这通常会导致荧光和光声信号相互对立,使得同时最大化这两种信号变得不可行。为应对这一挑战,我们在此提出一种使用双激发方法的新策略,其中一个激发波长产生荧光信号,另一个产生光声信号,从而在一个荧光-光声分子中实现两种信号的同时最大化。基于此策略,使用了三种染料分子进行比较,令人惊讶地发现具有两种激发波长类型的染料可分别产生荧光和光声信号。此外,该策略在类风湿性关节炎小鼠的双模成像中成功实现。重要的是,本研究强调了一种通过使用与双波长无关的激发来最大化荧光-光声信号的新设计准则。