Optimizing uPAR-targeting radiopeptides for improved tissue distribution: progress towards radionuclide therapy.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 41143984.
- Also identified by DOI 10.1007/s00259-025-07602-7 and PMC identifier 12920294.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
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.
Medical subject headings
- Receptors, Urokinase Plasminogen Activator
- Radioisotopes
- Peptides
- Radiopharmaceuticals