Linker Optimization in Lu-177 Labeled αvβ6-Integrin Binding Peptide Trimers for Targeted Radionuclide Therapy of

Nghia Trong Nguyen1, Tim Rheinfrank1, Stefan Stangl1

  • 1Department of Nuclear Medicine, TUM University Hospital and Central Institute for Translational Cancer Research, (TranslaTUM), School of Medicine, Technical University Munich, Munich 81675, Germany.

Insights

This study developed novel Lutetium-177 labeled radiopharmaceuticals targeting alpha-v-beta-6 integrin for cancer therapy. Optimized PEG linkers improved tumor uptake and retention, showing promise for targeted radiotherapeutics.

Area of Science:

  • Radiopharmaceutical chemistry
  • Integrin biology
  • Cancer therapy

Background:

  • Theranostic radiopharmaceuticals offer combined diagnosis and therapy.
  • Alpha-v-beta-6 (αvβ6) integrin is a promising pan-cancer target.
  • Limited therapeutic radioligands exist for αvβ6 integrin.

Purpose of the Study:

  • To develop and evaluate novel Lutetium-177 (Lu-177) labeled multimeric peptides targeting αvβ6 integrin.
  • To investigate the impact of polyethylene glycol (PEG) linker length on pharmacokinetics and efficacy.
  • To identify an optimized radioligand for αvβ6-integrin-targeted cancer radiotherapeutics.

Main Methods:

  • Construction of Lu-177-labeled multimerics using cyclic nonapeptides and DOTPI chelator via CuAAC.
  • Evaluation of in vitro αvβ6 integrin affinity and cellular uptake in H2009 cells.
  • In vivo studies in H2009 xenograft mice to assess tumor uptake, blood clearance, and renal retention.
  • Pharmacokinetic modulation using varying PEG linker lengths (PEG0, PEG3, PEG7, PEG11) and gelofusine administration.

Main Results:

  • Lu-177 conjugates showed comparable αvβ6 integrin affinity regardless of PEG length.
  • PEG linkers enhanced receptor-mediated uptake and internalization in αvβ6-positive cells.
  • The PEG7 trimer (P7) demonstrated optimal tumor uptake and retention in vivo.
  • Gelofusine significantly reduced renal retention of the radioconjugates.
  • P7 exhibited high selectivity for αvβ6 integrin and αvβ6-dependent radiotoxicity.

Conclusions:

  • PEGylated Lu-177 multimeric peptides are effective αvβ6-integrin-targeted radiotherapeutics.
  • The PEG7 trimer (P7) is a promising lead candidate for cancer therapy.
  • Further development of P7 could advance targeted αvβ6-integrin cancer treatment.