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December 20, 2018SHILAP Revista de lepidopterología2,152 citationsOpen Access

ROS and the DNA damage response in cancer

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USUpadhyayula Sai SrinivasNational University of SingaporeBTBryce Wei Quan TanNational University of SingaporeBVBalamurugan VellayappanNational University Cancer Institute, Singapore

Key Points

  • To review current knowledge on how reactive oxygen species influence the DNA damage response and evaluate their therapeutic potential when combined with genotoxic cancer therapies.
  • Synthesized findings from preclinical and clinical studies on reactive oxygen species interactions with the DNA damage response pathway.
  • Evaluated therapeutic outcomes from trials combining reactive oxygen species-modulating agents with chemotherapy and ionizing radiation.
  • Reactive oxygen species directly induce DNA double-strand breaks and modulate downstream repair responses triggered by genotoxic therapy.
  • Clinical evaluations combining reactive oxygen species modulators with standard chemotherapy or radiotherapy demonstrate mixed, context-dependent efficacy across different cancer settings.

Abstract

Reactive oxygen species (ROS) are a group of short-lived, highly reactive, oxygen-containing molecules that can induce DNA damage and affect the DNA damage response (DDR). There is unequivocal pre-clinical and clinical evidence that ROS influence the genotoxic stress caused by chemotherapeutics agents and ionizing radiation. Recent studies have provided mechanistic insight into how ROS can also influence the cellular response to DNA damage caused by genotoxic therapy, especially in the context of Double Strand Breaks (DSBs). This has led to the clinical evaluation of agents modulating ROS in combination with genotoxic therapy for cancer, with mixed success so far. These studies point to context dependent outcomes with ROS modulator combinations with Chemotherapy and radiotherapy, indicating a need for additional pre-clinical research in the field. In this review, we discuss the current knowledge on the effect of ROS in the DNA damage response, and its clinical relevance.

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Cite This Study

Srinivas et al. (2018) studied this question.

synapsesocial.com/papers/69d815a161e2ce1627d18b99https://doi.org/10.1016/j.redox.2018.101084
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