Greifenstein Lukas, Kramer Carsten S, Moon Euy Sung, Rösch Frank, Klega Andre, Landvogt Christian, Müller Corinna, Baum Richard P
CURANOSTICUM Wiesbaden-Frankfurt, Center for Advanced Radiomolecular Precision Oncology, 65191 Wiesbaden, Germany.
Department of Chemistry-TRIGA, Institute of Nuclear Chemistry, Johannes Gutenberg University, 55128 Mainz, Germany.
Pharmaceuticals (Basel). 2022 Aug 14;15(8):1000. doi: 10.3390/ph15081000.
Radiolabeled FAPI (fibroblast activation protein inhibitors) recently gained attention as widely applicable imaging and potential therapeutic compounds targeting CAF (cancer-associated fibroblasts) or DAF (disease-associated fibroblasts in benign disorders). Moreover, the use of FAPI has distinct advantages compared to FDG (e.g., increased sensitivity in regions with high glucose metabolism, no need for fasting, and rapid imaging). In this study, we wanted to evaluate the radiochemical synthesis and the clinical properties of the new CAF-targeting tracer [Ga]Ga-DATA.SA.FAPi. The compound consists of a (radio)chemically easy to use hybrid chelate DATA.SA, which can be labeled at low temperatures, making it an interesting molecule for 'instant kit-type' labeling, and a squaric acid moiety that provides distinct advantages for synthesis and radiolabeling. Our work demonstrates that automatic synthesis of the FAP inhibitor [Ga]Ga-DATA.SA.FAPi is feasible and reproducible, providing convenient access to this new hybrid chelator-based tracer. Our studies demonstrated the diagnostic usability of [Ga]Ga-DATA.SA.FAPi for the unambiguous detection of cancer-associated fibroblasts of various carcinomas and their metastases (NSCLC, liposarcoma, parotid tumors, prostate cancer, and pancreas adenocarcinoma), while physiological uptake in brain, liver, intestine, bone, and lungs was very low.
放射性标记的FAPI(成纤维细胞活化蛋白抑制剂)最近作为靶向CAF(癌症相关成纤维细胞)或DAF(良性疾病中的疾病相关成纤维细胞)的广泛适用的成像和潜在治疗化合物受到关注。此外,与FDG相比,FAPI的使用具有明显优势(例如,在高糖代谢区域灵敏度更高、无需禁食以及成像快速)。在本研究中,我们希望评估新型靶向CAF的示踪剂[Ga]Ga-DATA.SA.FAPi的放射化学合成及临床特性。该化合物由一种(放射)化学上易于使用的混合螯合剂DATA.SA组成,其可在低温下进行标记,这使其成为“即时试剂盒型”标记的一个有趣分子,还有一个方形酸部分,为合成和放射性标记提供了明显优势。我们的工作表明,FAP抑制剂[Ga]Ga-DATA.SA.FAPi的自动合成是可行且可重复的,为获取这种基于新型混合螯合剂的示踪剂提供了便利途径。我们的研究证明了[Ga]Ga-DATA.SA.FAPi在明确检测各种癌及其转移灶(非小细胞肺癌、脂肪肉瘤、腮腺肿瘤、前列腺癌和胰腺腺癌)的癌症相关成纤维细胞方面具有诊断可用性,而在脑、肝、肠、骨和肺中的生理性摄取非常低。