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Updated: Jan 18, 2026

Pretargeted Radioimmunotherapy Based on the Inverse Electron Demand Diels-Alder Reaction
Published on: January 29, 2019
The molecular blueprint of targeted radionuclide therapy
Irina Primac1, Kevin Tabury2, Alpaslan Tasdogan3,4
1Radiobiology Unit, Nuclear Medical Applications Institute, Belgian Nuclear Research Centre (SCK CEN), Mol, Belgium. irina.primac@sckcen.be.
Abstract:
Targeted radionuclide therapy (TRT) is a cutting-edge treatment approach in oncology that combines the molecular precision of targeted agents with the effect of radiotherapy to selectively deliver cytotoxic radiation to cancer cells. Research efforts from the past few decades have led to a diverse molecular landscape of TRT and have provided lessons for further rational development of targeted radiopharmaceuticals and expansion of the clinical applications of this treatment modality. In this Review, we discuss TRT in the context of therapeutic approaches currently available in oncology, describe the broad range of established and emerging targets for TRT including innovative approaches to exploit vulnerabilities presented by the tumour microenvironment, and address the challenges for clinical translation and molecular optimization. By bridging technological innovation and preclinical discoveries with real-world clinical implementation, ongoing research on TRT is seeking to provide effective and safe treatment options for patients across a variety of cancer types and treatment settings. Overall, we emphasize the transformative potential of TRT and highlight how a comprehensive understanding of what constitutes an optimal target can redefine clinical practice, fostering the evolution of TRT as a highly individualized and adaptable therapeutic option that improves outcomes across a broad range of cancer types.
Insights
Targeted radionuclide therapy (TRT) precisely delivers radiation to cancer cells, offering a promising oncology treatment. Understanding optimal targets is key to advancing TRT for improved patient outcomes.
Area of Science:
- Oncology
- Radiotherapy
- Molecular Imaging and Therapy
Background:
- Targeted radionuclide therapy (TRT) combines targeted agents with radiotherapy for precise cancer cell destruction.
- Decades of research have expanded the molecular targets and applications of TRT.
- TRT offers a way to deliver cytotoxic radiation selectively to tumors.
Purpose of the Study:
- To review current therapeutic approaches in oncology.
- To describe established and emerging targets for TRT, including tumor microenvironment strategies.
- To address challenges in clinical translation and molecular optimization of TRT.
Main Methods:
- Review of existing literature on targeted radionuclide therapy.
- Analysis of current and novel TRT targets.
- Discussion of challenges and future directions in TRT development and implementation.
Main Results:
- TRT has a diverse molecular landscape with established and emerging targets.
- Innovative approaches exploit tumor microenvironment vulnerabilities.
- Challenges in clinical translation and molecular optimization exist but are being addressed.
Conclusions:
- TRT has transformative potential in oncology.
- A comprehensive understanding of optimal targets can redefine clinical practice.
- TRT is evolving into an individualized, adaptable therapy improving outcomes across various cancers.
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