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.

PubMed

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.