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环已二胺三唑(CHDT)功能化使目标分子能够用 AlF/Ga/In 进行标记。

Cyclohexanediamine Triazole (CHDT) Functionalization Enables Labeling of Target Molecules with AlF/Ga/In.

机构信息

Helmholtz-Zentrum Dresden-Rossendorf, Institute of Radiopharmaceutical Cancer Research, Bautzner Landstraße 400, 01328 Dresden, Germany.

Technische Universität Dresden, School of Science, Faculty of Chemistry and Food Chemistry, Mommsenstraße 4, 01069 Dresden, Germany.

出版信息

Bioconjug Chem. 2024 Sep 18;35(9):1402-1416. doi: 10.1021/acs.bioconjchem.4c00313. Epub 2024 Aug 26.

Abstract

The AlF-labeling approach offers a one-step access to radiofluorinated biomolecules by mimicking the labeling process for radiometals. Although these labeling conditions are considered to be mild compared to classic radiofluorinations, improvements of the chelating units have led to the discovery of , which allows AlF-labeling already at ambient temperature. While the suitability of for functionalization and radiofluorination of proteins is well established, its use for small molecules or peptides is less explored. Herein, we advanced this acyclic pentadentate ligand by introducing an alkyne moiety for the late-stage functionalization of biomolecules via click chemistry. We show that in addition to AlF-labeling, the cyclohexanediamine triazole (CHDT) moiety allows stable complexation of Ga and In. Three novel CHDT-functionalized PSMA inhibitors were synthesized and their AlF-, Ga-, and In-labeled analogs were subjected to a detailed radiopharmacological characterization. Stability studies in human serum revealed among others a high kinetic inertness of all radiometal complexes. Furthermore, the AlF-labeled PSMA ligands were characterized for their biodistribution in a LNCaP derived tumor xenograft mouse model by PET imaging. One radioligand, , bearing a small azidoacetyl linker at the glutamate-urea-lysine motif, provided an performance comparable to that of but with even higher tumor-to-blood and tumor-to-muscle ratios at 120 min Overall, our results highlight the suitability of the novel CHDT moiety for functionalization and radiolabeling of small molecules or peptides with AlF, Ga, and In and the triazole ring seems to entail favorable pharmacokinetic properties for molecular imaging purposes.

摘要

AlF 标记方法通过模拟放射性金属的标记过程,为放射性氟化生物分子提供了一种一步法的途径。尽管与经典的放射性氟化相比,这些标记条件被认为是温和的,但螯合单元的改进导致了的发现,使得已经可以在环境温度下进行 AlF 标记。虽然已经证实 适合于蛋白质的功能化和放射性氟化,但它在小分子或肽中的应用研究较少。在此,我们通过引入炔基部分来改进这种非环状五齿配体,通过点击化学对生物分子进行后期功能化。我们表明,除了 AlF 标记外,环己二胺三唑(CHDT)部分还允许 Ga 和 In 的稳定络合。合成了三种新型的 CHDT 功能化 PSMA 抑制剂,并对其 AlF、Ga 和 In 标记类似物进行了详细的放射性药物特性研究。在人血清中的稳定性研究表明,所有放射性金属络合物都具有很高的动力学惰性。此外,通过正电子发射断层扫描(PET)成像,对 LNCaP 衍生的肿瘤异种移植小鼠模型中的 AlF 标记 PSMA 配体进行了生物分布特征研究。一种放射性配体,,在谷氨酸-脲-赖氨酸基序上带有一个小的叠氮乙酰基连接基,提供了与 相当的性能,但在 120 分钟时具有更高的肿瘤与血液和肿瘤与肌肉的比值。总的来说,我们的结果突出了新型 CHDT 部分在 AlF、Ga 和 In 标记小分子或肽方面的适用性,并且三唑环似乎具有适合分子成像目的的有利药代动力学特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3908/11417994/40b4aa7da881/bc4c00313_0001.jpg

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