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Published on: January 7, 2019
Criteria for the design and biological characterization of radiolabeled peptide-based pharmaceuticals
Ettore Benedetti1, Giancarlo Morelli, Antonella Accardo
1Centro Interuniversitario di Ricerca sui Peptidi Bioattivi (CIRPeB), Dipartimento di Chimica Biologica, Università Federico II, Naples, Italy. ettore.benedetti@unina.it
Abstract:
Radiolabeled peptide-based formulations are being evaluated for their application in oncological imaging and therapy using nuclear medicine techniques. A major breakthrough in the field was the discovery and identification of the G-protein coupled receptor superfamily that are overexpressed in a variety of human cancers. These receptors act as targets for endogenous compounds, often of peptidic nature, which can be radiolabeled and, therefore, could potentially be utilized as radiopharmaceuticals. This general strategy has proven successful for application in humans in only a few cases thus far. However, the use of more sophisticated structural methodology to enhance our understanding of the interactions between the receptor and the endogenous peptide or its analogs, and a more efficient preclinical evaluation process, may help to single out the most promising compounds for further development and eventual use in the clinical application of radiopharmaceuticals. This review analyzes current methods of approaching these key points. The rational process for developing peptide-based radiopharmaceuticals is presented, from the structural analysis of the peptide-receptor interaction for the identification and modeling of the peptide analogs to the synthesis, with an appropriate metal carrier, of compounds that mimic endogenous peptides. Finally, the in vitro and in vivo biological testing and evaluation in preclinical animal models is described. To render the entire process successful, expertise in different areas of drug development is indispensable.
Insights
Radiolabeled peptides targeting cancer biomarkers show promise for nuclear medicine imaging and therapy. Advanced structural analysis and preclinical testing are crucial for developing effective peptide-based radiopharmaceuticals.
Area of Science:
- Nuclear Medicine
- Oncology
- Radiopharmaceutical Development
Background:
- G-protein coupled receptors (GPCRs) are overexpressed in various human cancers, serving as targets for peptide-based radiopharmaceuticals.
- Radiolabeled peptides targeting these receptors offer potential for oncological imaging and therapy.
- Current clinical applications are limited, necessitating improved development strategies.
Purpose of the Study:
- To review current methodologies for developing peptide-based radiopharmaceuticals.
- To outline a rational process for identifying and optimizing peptide analogs for cancer targeting.
- To emphasize the importance of structural analysis and preclinical evaluation.
Main Methods:
- Structural analysis of peptide-receptor interactions to identify and model peptide analogs.
- Synthesis of radiolabeled compounds using appropriate metal carriers.
- In vitro and in vivo biological testing in preclinical cancer models.
Main Results:
- The review analyzes current approaches to peptide-based radiopharmaceutical development.
- It presents a rational process from structural analysis to preclinical evaluation.
- Expertise across multiple drug development areas is vital for success.
Conclusions:
- Sophisticated structural methods and efficient preclinical evaluation can identify promising radiopharmaceutical candidates.
- Optimizing peptide-receptor interactions and employing robust testing are key to clinical translation.
- Interdisciplinary collaboration is essential for advancing peptide-based radiopharmaceuticals in oncology.

