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Updated: Aug 3, 2025

Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
Advances in molecular targeted therapies to increase efficacy of (chemo)radiation therapy
Kristina Viktorsson1, Thorsten Rieckmann2,3, Maximilian Fleischmann4,5
1Department of Oncology/Pathology, Karolinska Institutet, Visionsgatan 4, 17164, Solna, Sweden.
Abstract:
Recent advances in understanding the tumor's biology in line with a constantly growing number of innovative technologies have prompted characterization of patients' individual malignancies and may display a prerequisite to treat cancer at its patient individual tumor vulnerability. In recent decades, radiation- induced signaling and tumor promoting local events for radiation sensitization were explored in detail, resulting the development of novel molecular targets. A multitude of pharmacological, genetic, and immunological principles, including small molecule- and antibody-based targeted strategies, have been developed that are suitable for combined concepts with radiation (RT) or chemoradiation therapy (CRT). Despite a plethora of promising experimental and preclinical findings, however, so far, only a very limited number of clinical trials have demonstrated a better outcome and/or patient benefit when RT or CRT are combined with targeted agents. The current review aims to summarize recent progress in molecular therapies targeting oncogenic drivers, DNA damage and cell cycle response, apoptosis signaling pathways, cell adhesion molecules, hypoxia, and the tumor microenvironment to impact therapy refractoriness and to boost radiation response. In addition, we will discuss recent advances in nanotechnology, e.g., RNA technologies and protein-degrading proteolysis-targeting chimeras (PROTACs) that may open new and innovative ways to benefit from molecular-targeted therapy approaches with improved efficacy.
Insights
Targeted molecular therapies show promise for enhancing cancer treatment efficacy when combined with radiation therapy (RT) or chemoradiation (CRT). However, clinical translation remains limited, necessitating further research into novel strategies like nanotechnology.
Area of Science:
- Oncology
- Molecular Biology
- Radiotherapy
Background:
- Advances in tumor biology and technology enable personalized cancer characterization.
- Radiation-induced signaling and tumor promotion are key targets for radiosensitization.
Purpose of the Study:
- To review molecular therapies targeting cancer vulnerabilities for improved radiation response.
- To discuss novel approaches like nanotechnology for enhanced efficacy.
Main Methods:
- Review of molecular therapies targeting oncogenic drivers, DNA damage, apoptosis, and tumor microenvironment.
- Exploration of nanotechnology-based strategies, including RNA technologies and PROTACs.
Main Results:
- Numerous molecular targets and targeted agents have been developed for combination with RT/CRT.
- Limited clinical success to date despite promising preclinical data.
Conclusions:
- Molecular-targeted therapies hold potential for overcoming therapy refractoriness and boosting radiation response.
- Nanotechnology and novel agents like PROTACs offer innovative avenues for improving cancer treatment efficacy.
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