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Radiotheranostics With Nanoparticles: Precision Targeting in Receptor-Overexpressing Tumors
Evalyne J Cheruiyot1,2, David M Wanjeh1,2, John K Birir1
1Institute of Nuclear Science & Technology, University of Nairobi, Nairobi, Kenya.
Abstract:
Cancer remains one of the most challenging medical conditions. Nanotechnology is revolutionizing the approach to cancer management as an efficient tool for early diagnosis, therapy and monitoring. Nanoparticles (NPs) have shown promising results in advancing precision medicine by integrating diagnostic imaging and targeted therapy within a single platform, a concept of theranostics. Nanocarriers are synthesized via the use of biocompatible materials that are functionalized with specific ligands that bind to receptors that are overexpressed on the surface of cancer cells. For theranostic purposes, these NPs are loaded with suitable radioisotopes that emit gamma, positron, alpha or beta radiation for imaging and/or therapy. Despite the significant successes, most of the work is still at the preclinical stages awaiting clinical translation. In this review, a comprehensive examination of the current state of receptor-targeted radiotheranostic NPs is presented, with a focus on their design, functionalization, receptor-specific targeting, and clinical translational potential. The role of key tumor markers is highlighted in guiding NP delivery and improving precision and therapy. The exploration of these cutting-edge advancements and associated challenges will provide insights into the revolution of radiotheranostic nanomedicine and its impact on the future of precision oncology.
Insights
Nanoparticles offer advanced cancer theranostics by combining imaging and therapy. Receptor-targeted nanocarriers show promise for precision oncology, but clinical translation remains a challenge.
Area of Science:
- Oncology
- Nanotechnology
- Radiochemistry
Background:
- Cancer management is a significant medical challenge.
- Nanotechnology offers innovative solutions for early diagnosis, therapy, and monitoring of cancer.
- Nanoparticles (NPs) are advancing precision medicine through theranostics, integrating diagnostics and targeted therapy.
Purpose of the Study:
- To review the current state of receptor-targeted radionanoparticles for cancer theranostics.
- To examine the design, functionalization, and targeting strategies of these NPs.
- To discuss their clinical translational potential and challenges.
Main Methods:
- Review of current literature on receptor-targeted radionanoparticles.
- Analysis of NP design, biocompatible materials, and ligand functionalization.
- Examination of radioisotope loading for imaging and therapeutic applications.
Main Results:
- Receptor-targeted NPs show promise for precise cancer diagnosis and therapy.
- Functionalization with specific ligands enhances targeting of cancer cells.
- Radiolanoparticles integrate imaging and therapeutic capabilities for theranostics.
Conclusions:
- Receptor-targeted radionanoparticles represent a significant advancement in precision oncology.
- Further research and clinical translation are needed to realize their full potential.
- Tumor markers play a crucial role in guiding NP delivery and enhancing therapeutic efficacy.
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