Cancer Center, Faculty of Health Sciences, University of Macau, Macau SAR 999078, China.
Sensors (Basel). 2019 Jan 10;19(2):238. doi: 10.3390/s19020238.
In this study, dual-modal fluorescence and photoacoustic microscopy was performed for noninvasive and functional in vivo imaging of inflammation induced by green fluorescent protein (GFP) transfected bacteria in mice ear. Our imaging results demonstrated that the multimodal imaging technique is able to monitor the tissue immunovascular responses to infections with molecular specificity. Our study also indicated that the combination of photoacoustic and fluorescence microscopy imaging can simultaneously track the biochemical changes including the bacterial distribution and morphological change of blood vessels in the biological tissues with high resolution and enhanced sensitivity. Consequently, the developed method paves a new avenue for improving the understanding of the pathology mechanism of inflammation.
在这项研究中,我们对 GFP 转染细菌诱导的小鼠耳部炎症进行了双模式荧光和光声显微镜检查,实现了非侵入性和功能性的体内炎症成像。我们的成像结果表明,该多模态成像技术能够以分子特异性监测组织免疫血管对感染的反应。我们的研究还表明,光声和荧光显微镜成像的结合可以同时以高分辨率和增强的灵敏度跟踪生物组织中的生化变化,包括细菌分布和血管形态变化。因此,所开发的方法为改善对炎症病理机制的理解开辟了新途径。