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Vadim Le Joncour1, Pirjo Laakkonen1
1Research Programs Unit, Translational Cancer Biology, Biomedicum Helsinki 1, University of Helsinki., Haartmaninkatu 8, 00014 Helsinki, Finland.
Abstract:
Accounting for 16 million new cases and 9 million deaths annually, cancer leaves a great number of patients helpless. It is a complex disease and still a major challenge for the scientific and medical communities. The efficacy of conventional chemotherapies is often poor and patients suffer from off-target effects. Each neoplasm exhibits molecular signatures - sometimes in a patient specific manner - that may completely differ from the organ of origin, may be expressed in markedly higher amounts and/or in different location compared to the normal tissue. Although adding layers of complexity in the understanding of cancer biology, this cancer-specific signature provides an opportunity to develop targeting agents for early detection, diagnosis, and therapeutics. Chimeric antibodies, recombinant proteins or synthetic polypeptides have emerged as excellent candidates for specific homing to peripheral and central nervous system cancers. Specifically, peptide ligands benefit from their small size, easy and affordable production, high specificity, and remarkable flexibility regarding their sequence and conjugation possibilities. Coupled to imaging agents, chemotherapies and/or nanocarriers they have shown to increase the on-site delivery, thus allowing better tumor mass contouring in imaging and increased efficacy of the chemotherapies associated with reduced adverse effects. Therefore, some of the peptides alone or in combination have been tested in clinical trials to treat patients. Peptides have been well-tolerated and shown absence of toxicity. This review aims to offer a view on tumor targeting peptides that are either derived from natural peptide ligands or identified using phage display screening. We also include examples of peptides targeting the high-grade malignant tumors of the central nervous system as an example of the complex therapeutic management due to the tumor's location. Peptide vaccines are outside of the scope of this review.
Insights
Targeting peptides offer a promising approach to cancer treatment, improving drug delivery and reducing side effects. These peptides show good tolerability and no toxicity in clinical trials.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Cancer remains a significant global health challenge with 16 million new cases and 9 million deaths annually.
- Conventional chemotherapies often exhibit limited efficacy and cause undesirable off-target effects in patients.
- Tumor-specific molecular signatures present opportunities for developing targeted detection and therapeutic agents.
Purpose of the Study:
- To review tumor-targeting peptides derived from natural ligands or identified via phage display screening.
- To highlight the potential of peptides in cancer therapy, particularly for central nervous system tumors.
- To discuss the advantages of peptide ligands in drug delivery and imaging.
Main Methods:
- Review of literature on tumor-targeting peptides.
- Analysis of peptides derived from natural sources and identified through phage display.
- Examination of peptide applications in conjunction with imaging agents, chemotherapies, and nanocarriers.
Main Results:
- Peptide ligands demonstrate high specificity, ease of production, and flexibility for conjugation.
- Peptides coupled with agents enhance on-site delivery, improve tumor imaging, and increase therapeutic efficacy with reduced adverse effects.
- Clinical trials indicate that peptides are well-tolerated and exhibit no toxicity.
Conclusions:
- Tumor-targeting peptides represent a promising strategy for enhancing cancer diagnosis and treatment.
- Peptides offer a safe and effective platform for targeted drug delivery, especially for challenging cancers like those in the central nervous system.
- Further development and clinical application of peptides hold significant potential for improving patient outcomes in oncology.
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