Radiosensitive Genes

Radiosensitive genes are genes whose activity or variation influences how cells respond to ionizing radiation, making them important in cancer research and radiotherapy. Radiation-induced DNA damage activates signaling pathways that regulate DNA repair, cell-cycle checkpoints, apoptosis, and other stress responses; changes in these genes can therefore increase or reduce cellular survival after treatment. Studying radiosensitive genes helps researchers identify biomarkers that predict tumor response, explain treatment resistance, and support more individualized radiation schedules. These genes may also reveal targets for combination therapies designed to improve tumor control while limiting injury to healthy tissue.

Radiosensitive Genes - Related Videos

Research

JoVE Journal - Cancer Research

Genome-Wide CRISPR Screen for Unveiling Radiosensitive and Radioresistant Genes

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2025

A meticulous and structured approach is given to select resistant and sensitive genes of radiation through the application of a genome-wide CRISPR/Cas9 screen method. This protocol also has the potential to serve as a versatile framework for other research endeavors investigating the mechanisms of resistance to clinically administered chemical drugs.

Zebrafish Larvae as a Model to Evaluate Potential Radiosensitizers or Protectors

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2022

The zebrafish has recently been exploited as a model to validate potential radiation modifiers. The present protocol describes the detailed steps to use zebrafish embryos for radiation-based screening experiments and some observational approaches to evaluate the effect of different treatments and radiation.

Radiosensitivity of Cancer Stem Cells in Lung Cancer Cell Lines

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2019

The presence of cancer stem cells have been associated with relapse or poor outcomes after radiotherapy. This manuscript describes the methods to study the radiosensitivity of cancer stem cells in lung cancer cell lines.

Live Imaging to Quantify Cellular Radiosensitivity in Patient-Derived Tumor Organoids

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Cited by 1 •

2024

Here, we detail a straightforward live imaging approach for quantifying the sensitivity of patient-derived tumor organoids to ionizing radiation.

Research

JoVE Journal - Biology
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Using the Gene Pulser MXcell Electroporation System to Transfect Primary Cells with High Efficiency

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Cited by 11 •

2010

This procedure shows how to use the Gene Pulser MXcell electroporation system to rapidly and easily identify the best electroporation conditions for mouse embryonic fibroblasts (MEFs) or other primary cells. Considerations for troubleshooting are also discussed in the associated video.

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