Mokrousov Maksim D, Thompson Weylan, Ermilov Sergey A, Abakumova Tatiana, Novoselova Marina V, Inozemtseva Olga A, Zatsepin Timofei S, Zharov Vladimir P, Galanzha Ekaterina I, Gorin Dmitry A
Skolkovo Institute of Science and Technology, Bolshoy Boulevard 30, bld. 1, Moscow, 121205, Russia.
PhotoSound Technologies, 9511 Town Park Dr, Houston, TX 77036, USA.
Biomed Opt Express. 2021 May 7;12(6):3181-3195. doi: 10.1364/BOE.419461. eCollection 2021 Jun 1.
Multimodal imaging systems are in high demand for preclinical research, experimental medicine, and clinical practice. Combinations of photoacoustic technology with other modalities including fluorescence, ultrasound, MRI, OCT have been already applied in feasibility studies. Nevertheless, only the combination of photoacoustics with ultrasound in a single setup is commercially available now. A combination of photoacoustics and fluorescence is another compelling approach because those two modalities naturally complement each other. Here, we presented a bimodal contrast agent based on the indocyanine green dye (ICG) as a single signalling compound embedded in the biocompatible and biodegradable polymer shell. We demonstrate its remarkable characteristics by imaging using a commercial photoacoustic/fluorescence tomography system (TriTom, PhotoSound Technologies). It was shown that photoacoustic signal of the particles depends on the amount of dye loaded into the shell, while fluorescence signal depends on the total amount of dye per particle. For the first time to our knowledge, a commercial bimodal photoacoustic/fluorescence setup was used for characterization of ICG doped polymer particles. Additionally, we conducted cell toxicity studies for these particles as well as studied biodistribution over time and using fluorescent imaging. The obtained results suggest a potential for the application of biocompatible and biodegradable bimodal contrast agents as well as the integrated photoacoustic/fluorescence imaging system for preclinical and clinical studies.
多模态成像系统在临床前研究、实验医学和临床实践中需求旺盛。光声技术与包括荧光、超声、磁共振成像(MRI)、光学相干断层扫描(OCT)在内的其他模态的组合已应用于可行性研究。然而,目前只有光声与超声在单一设备中的组合有商业产品。光声与荧光的组合是另一种引人注目的方法,因为这两种模态天然互补。在此,我们展示了一种基于吲哚菁绿染料(ICG)的双模态造影剂,它作为单一信号化合物嵌入生物相容性和可生物降解的聚合物壳中。我们使用商用光声/荧光断层扫描系统(TriTom,PhotoSound Technologies)成像展示了其显著特性。结果表明,颗粒的光声信号取决于加载到壳中的染料量,而荧光信号取决于每个颗粒的染料总量。据我们所知,首次使用商用双模态光声/荧光设备对ICG掺杂的聚合物颗粒进行表征。此外,我们对这些颗粒进行了细胞毒性研究,并使用荧光成像研究了其随时间的生物分布。所得结果表明,生物相容性和可生物降解的双模态造影剂以及集成的光声/荧光成像系统在临床前和临床研究中有应用潜力。