Lis Christian, Ludwig Friedrich-Alexander, Fischer Steffen, Ullrich Martin, Lankau Hans-Joachim, Sihver Wiebke, Gündel Daniel, Joseph Desna, Meyer Christoph, Kopka Klaus, Pietzsch Jens, Brust Peter, Hoepping Alexander
ABX Advanced Biochemical Compounds GmbH, Heinrich-Gläser-Straße 10-14, 01454 Radeberg, Germany.
Institute of Radiopharmaceutical Cancer Research, Helmholtz-Zentrum Dresden-Rossendorf (HZDR), Bautzner Landstraße 400, 01328 Dresden, Germany.
J Med Chem. 2025 Apr 10;68(7):7213-7231. doi: 10.1021/acs.jmedchem.4c02767. Epub 2025 Mar 26.
A current global limitation to the timely and equitable patient access to PSMA-based therapies for prostate cancer (PCa) is the insufficient PET capacity for pretreatment imaging. However, the extensive global availability of SPECT cameras renders this imaging technology as an attractive alternative. The lack of regulatory approved PSMA radioligands for SPECT imaging of PCa prompted us to design new Tc-labeled radioligands with a fast pharmacokinetic profile by harnessing proven complexation of the [Tc][TcO] core by a bis(aminoethanethiol) chelator. Six Tc-labeled PSMA radioligands were synthesized and biologically characterized in cell-based assays and by SPECT imaging in LNCaP tumor-bearing mice. From this series, [Tc]TcO- ([Tc]TcO-ABX474, (PSMA) = 6.1 ± 1.7 nM) displayed the most advantageous properties for SPECT imaging of PCa: high and fast tumor uptake accompanied by rapid clearance from nontarget tissues, leading to faster pharmacokinetics than observed for the reference [Tc]Tc-PSMA-I&S. Furthermore, [Tc]TcO- performed similar to the established PSMA-PET radioligand [Ga]Ga-PSMA-11.
目前,全球在患者及时、公平地获得基于前列腺特异性膜抗原(PSMA)的前列腺癌(PCa)治疗方面存在一个限制因素,即用于治疗前成像的正电子发射断层扫描(PET)能力不足。然而,单光子发射计算机断层扫描(SPECT)相机在全球广泛可用,使得这种成像技术成为一种有吸引力的替代方案。缺乏监管部门批准用于PCa的SPECT成像的PSMA放射性配体,促使我们通过利用双(氨基乙硫醇)螯合剂对[锝][锝酸盐]核心的成熟络合作用,设计具有快速药代动力学特征的新型锝标记放射性配体。合成了六种锝标记的PSMA放射性配体,并在基于细胞的实验以及荷LNCaP肿瘤小鼠的SPECT成像中进行了生物学特性研究。在该系列中,[锝]锝酸盐-([锝]锝酸盐-ABX474,解离常数(PSMA)=6.1±1.7 nM)在PCa的SPECT成像中表现出最有利的特性:肿瘤摄取高且迅速,同时从非靶组织快速清除,导致药代动力学比参考的[锝]锝-PSMA- I&S更快。此外,[锝]锝酸盐-的表现与已确立的PSMA-PET放射性配体[镓]镓-PSMA-11相似。