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Published on: January 7, 2019
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.
Abstract:
Theranostic radiopharmaceuticals exploit the same molecular target for diagnosis and therapy. Among emerging pan-cancer targets, αvβ6-integrin is highly expressed on various malignant cell types and can be imaged clinically with Ga-68-Trivehexin. However, therapeutic αvβ6-integrin-directed radioligands remain scarce. Here, Lu-177-labeled multimerics of the cyclic nonapeptides Tyr2, sequence c(YRGDLAYp(NMe)K), were constructed using the tetrafunctional chelator DOTPI by means of CuAAC-based and evaluated as αvβ6-integrin-targeted radiotherapeutics. PEG linkers of increasing length (PEG0, PEG3, PEG7, PEG11) were introduced between the chelator and peptides to modulate pharmacokinetics and cellular processing. The Lu-177-labeled conjugates displayed comparable polarity (log D7.4 ≈ -2) and αvβ6-integrin affinities determined by ELISA (IC50 ∼ 0.2-0.5 nM), indicating minimal effects of PEG length on in vitro parameters. In αvβ6-positive H2009 cells, PEG linkers markedly enhanced and prolonged receptor-mediated uptake and internalization, consistent with improved multivalent engagement. In H2009 xenograft mice, PEG linkers reduced early blood-pool activity and increased tumor uptake at 24 h, while gelofusine (4% succinylated gelatin in Ringer's acetate) efficiently mitigated the elevated renal retention (up to 92% reduction). Performance gains plateaued beyond PEG7, identifying the PEG7 trimer (P7) as the preferred lead due to favorable tumor uptake/retention. P7 exhibited high selectivity (65- to 671-fold) over other integrin subtypes, αvβ6-integrin-dependent radiotoxicity to tumor cells, and sustained tumor retention for up to 6 days according to μSPECT.
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.

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