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Published on: October 4, 2024
Radiolabelled peptides for tumour therapy: current status and future directions. Plenary lecture at the EANM 2002
Marion de Jong1, Dik Kwekkeboom, Roelf Valkema
1Department of Nuclear Medicine, L2, Erasmus MC, 3015 GD, Rotterdam, The Netherlands. dejong@nuge.azr.nl
Abstract:
On their plasma membranes, cells express receptor proteins with high affinity for regulatory peptides, such as somatostatin. Changes in the density of these receptors during disease, e.g. overexpression in many tumours, provide the basis for new imaging methods. The first peptide analogues successfully applied for visualisation of receptor-positive tumours were radiolabelled somatostatin analogues. The next step was to label these analogues with therapeutic radionuclides for peptide receptor radionuclide therapy (PRRT). Results from preclinical and clinical multicentre studies have already shown an effective therapeutic response when using radiolabelled somatostatin analogues to treat receptor-positive tumours. Infusion of positively charged amino acids reduces kidney uptake, enlarging the therapeutic window. For PRRT of CCK-B receptor-positive tumours, such as medullary thyroid carcinoma, radiolabelled minigastrin analogues are currently being successfully applied. The combination of different therapy modalities holds interest as a means of improving the clinical therapeutic effects of radiolabelled peptides. The combination of different radionuclides, such as (177)Lu- and (90)Y-labelled somatostatin analogues, to reach a wider tumour region of high curability, has been described. A variety of other peptide-based radioligands, such as bombesin and NPY(Y(1)) analogues, receptors for which are expressed on common cancers such as prostate and breast cancer, are currently under development and in different phases of (pre)clinical investigation. Multi-receptor tumour targeting using the combination of bombesin and NPY(Y(1)) analogues is promising for scintigraphy and PRRT of breast carcinomas and their lymph node metastases.
Insights
Radiolabeled peptide analogues targeting somatostatin receptors show promise for imaging and treating receptor-positive tumors. Peptide receptor radionuclide therapy (PRRT) combined with strategies to reduce kidney uptake enhances therapeutic efficacy.
Area of Science:
- Oncology
- Nuclear Medicine
- Radiopharmaceutical Chemistry
Background:
- Cell surface receptors, like somatostatin receptors, are overexpressed in many tumors.
- Radiolabeled peptide analogues targeting these receptors enable tumor visualization and therapy.
Purpose of the Study:
- To review the advancements and potential of peptide receptor radionuclide therapy (PRRT) for cancer treatment.
- To explore novel peptide-based radioligands and combination therapies for improved clinical outcomes.
Main Methods:
- Development and application of radiolabeled somatostatin and minigastrin analogues for imaging and PRRT.
- Investigating strategies to enhance therapeutic window, such as amino acid infusions.
- Exploring combination therapies using different radionuclides and multi-receptor targeting agents.
Main Results:
- Radiolabeled somatostatin analogues have demonstrated effective therapeutic responses in preclinical and clinical studies.
- Minigastrin analogues are successfully used for PRRT of CCK-B receptor-positive tumors.
- Combination therapies and novel peptide analogues (bombesin, NPY) show promise for various cancers.
Conclusions:
- PRRT with radiolabeled peptides is an effective treatment for receptor-positive tumors.
- Ongoing research into novel radioligands and combination strategies promises to further improve cancer therapy outcomes.
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