Optimizing uPAR-targeting radiopeptides for improved tissue distribution: progress towards radionuclide therapy.

Vaccarin, Christian; Beyer, Darja; Schmid, Jerome V; Klein, Bastian; Jegathasan, Jathursa; Behera, Shreshtha; Deupi, Xavier; Schibli, Roger et al. · Eur J Nucl Med Mol Imaging · 2026

basic_science · Level V

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Abstract

The aim of this study was to develop radiopeptides for targeting the urokinase-type plasminogen activator receptor (uPAR) modified with an albumin-binding moiety to improve their tissue distribution profiles. uPAR-11, uPAR-12, uPAR-14, uPAR-15, uPAR-17 and uPAR-18 were synthesized based on the AE105 nonapeptide which was modified with the p-tolyl-based albumin binder and variable linker entities and chelators. The <sup>177</sup>Lu-labeled peptides were evaluated in vitro with regard to their stability, albumin-binding properties and uPAR-binding affinity using HEK-uPAR cells. Biodistribution and SPECT/CT imaging studies were performed with HEK-uPAR xenografted nude mice. The acquired data were compared to those obtained with [<sup>177</sup>Lu]Lu-DOTA-AE105. The radiopeptides showed 11‒155-fold higher albumin-binding affinity in human blood plasma than [<sup>177</sup>Lu]Lu-DOTA-AE105. The uPAR-binding affinity reached K<sub>D</sub> values of 31‒42 nM, similar to the K<sub>D</sub> value of 20 ± 1 nM determined for [<sup>177</sup>Lu]Lu-DOTA-AE105. Accumulation in the HEK-uPAR xenograft was 6.0-16% IA/g at 4 h p.i., which was 7‒18-fold higher than that of [<sup>177</sup>Lu]Lu-DOTA-AE105. PEG spacers next to the albumin binder as exemplified in [<sup>177</sup>Lu]Lu-uPAR-11, [<sup>177</sup>Lu]Lu-uPAR-15 and [<sup>177</sup>Lu]Lu-uPAR-18 led to increased xenograft accumulation while their replacement with an alkane spacer in [<sup>177</sup>Lu]Lu-uPAR-12 led to unfavorably high blood retention. A diaminopropionic acid to connect the different entities did not improve the tissue distribution profile of [<sup>177</sup>Lu]Lu-uPAR-14 as compared to other peptides which were designed with a lysine residue. The use of a DOTAGA chelator instead of a DOTA resulted in unfavorable kidney retention of [<sup>177</sup>Lu]Lu-uPAR-17. In view of a clinical translation, [<sup>177</sup>Lu]Lu-uPAR-11 emerged as the most favorable candidate. Future studies will, thus, focus on the therapeutic potential of [<sup>177</sup>Lu]Lu-uPAR-11 in tumor-bearing mice.

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