Department of Nuclear Medicine, Inselspital, Bern University Hospital, University of Bern, Bern, Switzerland.
Department of Nuclear Medicine, Rostock University Medical Centre, Rostock, Germany.
Eur J Nucl Med Mol Imaging. 2023 Sep;50(11):3202-3213. doi: 10.1007/s00259-023-06285-2. Epub 2023 Jun 7.
The present study aims at evaluating the preclinical and the clinical performance of [Ga]Ga-DATASA.FAPi, which has the advantage to be labeled with gallium-68 at room temperature.
[Ga]Ga-DATA.SA.FAPi was assessed in vitro on FAP-expressing stromal cells, followed by biodistribution and in vivo imaging on prostate and glioblastoma xenografts. Moreover, the clinical assessment of [Ga]Ga-DATA.SA.FAPi was conducted on six patients with prostate cancer, aiming on investigating, biodistribution, biokinetics, and determining tumor uptake.
[Ga]Ga-DATA.SA.FAPi is quantitatively prepared in an instant kit-type version at room temperature. It demonstrated high stability in human serum, affinity for FAP in the low nanomolar range, and high internalization rate when associated with CAFs. Biodistribution and PET studies in prostate and glioblastoma xenografts revealed high and specific tumor uptake. Elimination of the radiotracer mainly occurred through the urinary tract. The clinical data are in accordance with the preclinical data concerning the organ receiving the highest absorbed dose (urinary bladder wall, heart wall, spleen, and kidneys). Different to the small-animal data, uptake of [Ga]Ga-DATA.SA.FAPi in tumor lesions is rapid and stable and tumor-to-organ and tumor-to-blood uptake ratios are high.
The radiochemical, preclinical, and clinical data obtained in this study strongly support further development of [Ga]Ga-DATA.SA.FAPi as a diagnostic tool for FAP imaging.
本研究旨在评估[Ga]Ga-DATASA.FAPi 的临床前和临床性能,该探针具有在室温下用镓-68 进行标记的优势。
[Ga]Ga-DATA.SA.FAPi 在表达 FAP 的基质细胞上进行体外评估,随后在前列腺和神经胶质瘤异种移植模型上进行生物分布和体内成像。此外,还对 6 名前列腺癌患者进行了[Ga]Ga-DATA.SA.FAPi 的临床评估,旨在研究其生物分布、生物动力学和肿瘤摄取情况。
[Ga]Ga-DATA.SA.FAPi 可在室温下即时制备成试剂盒形式,具有高稳定性,对 FAP 的亲和力为纳摩尔级,与 CAFs 结合时具有高内化率。在前列腺和神经胶质瘤异种移植模型中的生物分布和 PET 研究显示了高特异性肿瘤摄取。放射性示踪剂的消除主要通过泌尿系统进行。临床数据与器官吸收剂量最高(膀胱壁、心肌壁、脾脏和肾脏)的预临床数据一致。与小动物数据不同,[Ga]Ga-DATA.SA.FAPi 在肿瘤病灶中的摄取快速且稳定,肿瘤与器官和肿瘤与血液的摄取比值较高。
本研究获得的放射化学、临床前和临床数据强烈支持进一步开发[Ga]Ga-DATA.SA.FAPi 作为 FAP 成像的诊断工具。