Kanagasundaram Thines, Laube Markus, Wodtke Johanna, Kramer Carsten Sven, Stadlbauer Sven, Pietzsch Jens, Kopka Klaus
Helmholtz-Zentrum Dresden-Rossendorf, Institute of Radiopharmaceutical Cancer Research, Department of Radiopharmaceutical and Chemical Biology, Bautzner Landstrasse 400, 01328 Dresden, Germany.
Institute of Inorganic Chemistry, Heidelberg University, Im Neuenheimer Feld 270, 69120 Heidelberg, Germany.
Pharmaceuticals (Basel). 2021 Nov 12;14(11):1155. doi: 10.3390/ph14111155.
Radiolabeled fluorescent dyes are decisive for bimodal imaging as well as highly in demand for nuclear- and optical imaging. Silicon-rhodamines (SiRs) show unique near-infrared (NIR) optical properties, large quantum yields and extinction coefficients as well as high photostability. Here, we describe the synthesis, characterization and radiolabeling of novel NIR absorbing and emitting fluorophores from the silicon-rhodamine family for use in optical imaging (OI) combined with positron emission tomography (PET) or single photon emission computed tomography (SPECT), respectively. The presented photostable SiRs were characterized using NMR-, UV-Vis-NIR-spectroscopy and mass spectrometry. Moreover, the radiolabeling conditions using fluorine-18 or iodine-123 were extensively explored. After optimization, the radiofluorinated NIR imaging agents were obtained with radiochemical conversions (RCC) up to 70% and isolated radiochemical yields (RCY) up to 54% at molar activities of g.t. 70 GBq/µmol. Radioiodination delivered RCCs over 92% and allowed to isolate the I-labeled product in RCY of 54% at a molar activity of g.t. 7.6 TBq/µmol. The radiofluorinated SiRs exhibit in vitro stabilities g.t. 70% after two hours in human serum. The first described radiolabeled SiRs are a promising step toward their further development as multimodal PET/SPECT-NIR imaging agents for planning and subsequent imaging-guided oncological surgery.
放射性标记的荧光染料对于双模态成像至关重要,并且在核成像和光学成像中也有很高的需求。硅罗丹明(SiRs)具有独特的近红外(NIR)光学特性、高量子产率和消光系数以及高光稳定性。在此,我们描述了从硅罗丹明家族合成、表征和放射性标记新型近红外吸收和发射荧光团,分别用于与正电子发射断层扫描(PET)或单光子发射计算机断层扫描(SPECT)相结合的光学成像(OI)。使用核磁共振、紫外可见近红外光谱和质谱对所展示的光稳定SiRs进行了表征。此外,还广泛探索了使用氟 - 18或碘 - 123的放射性标记条件。经过优化,获得了放射性氟化的近红外成像剂,在摩尔活度大于等于70 GBq/µmol时,放射化学转化率(RCC)高达70%,分离放射化学产率(RCY)高达54%。放射性碘化的放射化学转化率超过92%,并允许在摩尔活度大于等于7.6 TBq/µmol时以54%的RCY分离出碘标记产物。放射性氟化的SiRs在人血清中两小时后的体外稳定性大于等于70%。首次描述的放射性标记SiRs是朝着其作为用于规划和后续成像引导肿瘤手术的多模态PET/SPECT - NIR成像剂进一步发展的有希望的一步。