Department of Chemistry and Beckman Institute for Advanced Science and Technology, University of Illinois at Urbana-Champaign , Urbana, Illinois 61801, United States.
J Am Chem Soc. 2018 Jan 24;140(3):1011-1018. doi: 10.1021/jacs.7b10783. Epub 2018 Jan 9.
Photoacoustic (PA) imaging is an emerging imaging modality that utilizes optical excitation and acoustic detection to enable high resolution at centimeter depths. The development of activatable PA probes can expand the utility of this technology to allow for detection of specific stimuli within live-animal models. Herein, we report the design, development, and evaluation of a series of Acoustogenic Probe(s) for Nitric Oxide (APNO) for the ratiometric, analyte-specific detection of nitric oxide (NO) in vivo. The best probe in the series, APNO-5, rapidly responds to NO to form an N-nitroso product with a concomitant 91 nm hypsochromic shift. This property enables ratiometric PA imaging upon selective irradiation of APNO-5 and the corresponding product, tAPNO-5. Moreover, APNO-5 displays the requisite photophysical characteristics for in vivo PA imaging (e.g., high absorptivity, low quantum yield) as well as high biocompatibility, stability, and selectivity for NO over a variety of biologically relevant analytes. APNO-5 was successfully applied to the detection of endogenous NO in a murine lipopolysaccharide-induced inflammation model. Our studies show a 1.9-fold increase in PA signal at 680 nm and a 1.3-fold ratiometric turn-on relative to a saline control.
光声(PA)成像是一种新兴的成像模式,利用光学激发和声学检测实现厘米深度的高分辨率。可激活 PA 探针的开发可以扩展这项技术的实用性,使其能够在活体动物模型中检测特定的刺激。在此,我们报告了一系列用于一氧化氮(NO)的声敏探针(Acoustogenic Probe(s) for Nitric Oxide,APNO)的设计、开发和评估,用于体内 NO 的比色、分析物特异性检测。该系列中性能最佳的探针 APNO-5 可快速响应 NO,形成具有伴随 91nm 红移的 N-亚硝基产物。这种特性使得在选择性辐照 APNO-5 和相应产物 tAPNO-5 时能够进行比率型 PA 成像。此外,APNO-5 表现出适用于体内 PA 成像的必要光物理特性(例如,高吸收率、低量子产率)以及对 NO 的高生物相容性、稳定性和选择性,优于多种生物学相关分析物。APNO-5 成功应用于小鼠脂多糖诱导的炎症模型中内源性 NO 的检测。我们的研究表明,与生理盐水对照相比,在 680nm 处的 PA 信号增加了 1.9 倍,比率型开启增加了 1.3 倍。