Shi Xue-Feng, Ji Bin, Kong Yanyan, Guan Yihui, Ni Ruiqing
Department of Respiratory Medicine, Qinghai Provincial People's Hospital, Xining, China.
Department of Radiopharmacy and Molecular Imaging, School of Pharmacy, Fudan University, Shanghai, China.
Front Bioeng Biotechnol. 2021 Sep 28;9:746815. doi: 10.3389/fbioe.2021.746815. eCollection 2021.
Optoacoustic (photoacoustic) imaging has demonstrated versatile applications in biomedical research, visualizing the disease pathophysiology and monitoring the treatment effect in an animal model, as well as toward applications in the clinical setting. Given the complex disease mechanism, multimodal imaging provides important etiological insights with different molecular, structural, and functional readouts . Various multimodal optoacoustic molecular imaging approaches have been applied in preclinical brain imaging studies, including optoacoustic/fluorescence imaging, optoacoustic imaging/magnetic resonance imaging (MRI), optoacoustic imaging/MRI/Raman, optoacoustic imaging/positron emission tomography, and optoacoustic/computed tomography. There is a rapid development in molecular imaging contrast agents employing a multimodal imaging strategy for pathological targets involved in brain diseases. Many chemical dyes for optoacoustic imaging have fluorescence properties and have been applied in hybrid optoacoustic/fluorescence imaging. Nanoparticles are widely used as hybrid contrast agents for their capability to incorporate different imaging components, tunable spectrum, and photostability. In this review, we summarize contrast agents including chemical dyes and nanoparticles applied in multimodal optoacoustic brain imaging integrated with other modalities in small animals, and provide outlook for further research.
光声成像已在生物医学研究中展现出广泛应用,可在动物模型中可视化疾病病理生理学并监测治疗效果,还可用于临床环境。鉴于疾病机制复杂,多模态成像通过不同的分子、结构和功能读数提供重要的病因学见解。各种多模态光声分子成像方法已应用于临床前脑成像研究,包括光声/荧光成像、光声成像/磁共振成像(MRI)、光声成像/MRI/拉曼成像、光声成像/正电子发射断层扫描以及光声/计算机断层扫描。采用多模态成像策略针对脑部疾病相关病理靶点的分子成像造影剂发展迅速。许多用于光声成像的化学染料具有荧光特性,并已应用于光声/荧光混合成像。纳米颗粒因其能够整合不同成像成分、可调谐光谱和光稳定性而被广泛用作混合造影剂。在本综述中,我们总结了用于小动物多模态光声脑成像并与其他模态相结合的造影剂,包括化学染料和纳米颗粒,并对进一步研究进行了展望。