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April 3, 2026Current Issues in Molecular Biology0 citationsOpen Access

Different Effects of Antioxidants Against Ionizing Radiation: An Experimental Model of Micronuclei

MAMiguel AlcarazDADaniel Gyingiri AchelUniversity of GhanaJGJosé A. García GamuzUniversidad de Murcia

Key Points

  • This research aims to evaluate the effectiveness of 29 substances as protective agents against radiation-induced chromosomal damage.
  • Conducted comparative study using cytokinesis-block micronucleus (CBMN) assay.
  • Administered antioxidants before and after exposure to 2 Gy gamma radiation.
  • Assessed genoprotective capacity at the same concentrations for consistency.
  • Rosmarinic acid (RA) reduced the frequency of microns induced by radiation by 58% before exposure (p < 0.001).
  • RA showed a dose reduction factor of 7.1 with significant results (p < 0.001).
  • RA lost genoprotective capacity when administered after radiation exposure.
  • Antilipoperoxidant activity was crucial for reducing chromosomal damage.

Abstract

There is an urgent need to find and develop radiation countermeasures for both planned and unplanned exposures. However, in recent years, radioprotective substances, such as rosmarinic acid (RA), have been described, presenting contradictory and even paradoxical results. In this paper, we evaluated the genoprotective capacity of 29 substances against chromosomal damage induced by gamma radiation in a comparative study using the same technique, i.e., cytokinesis-block micronucleus (CBMN) assay to evaluate their genoprotective capacities, at the same concentrations and administered before and after exposure to 2 Gy of gamma radiation. We then related the observed effects with their chemical characteristics to appreciate the different mechanisms of action that could explain some apparent contradictions that may emerge. In our study, before exposure to ionizing radiation, RA produced the greatest reduction in the frequency of radiation-induced micronuclei (p < 0.001), presenting the highest magnitude of protection (58%) and a dose reduction factor of 7.1 (p < 0.001); however, it loses this genoprotective capacity when administered after exposure to radiation. These results could be attributed to the different radical-scavenging and antilipoperoxidative activities of each substance tested. Antilipoperoxidant activity was found to be the most important factor in the reduction in radiation-induced chromosomal damage; thus, lipo-antioxidant substances emerged as the most effective in protecting genetic material against oxidative damage.

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Cite This Study

Alcaraz et al. (2026) studied this question.

synapsesocial.com/papers/69cf5e015a333a821460c0fchttps://doi.org/10.3390/cimb48040364
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Radiomodulatory effects of rosmarinic acid in melanocytic cells2026
  2. 2Protective role of rosmarinic acid against radiation-induced dermatitis: focus on oxidative stress and inflammation2026
  3. 3Efficacy of Some Natural Antioxidants in Targeting Free Radicals Induced by Radiation Exposure: A Mini - Review2024
  4. 4Dietary Antioxidants Influence IER5 Activation and DNA Repair: Implications for Radioprotection and Healthy Aging2025
  5. 5Assessment of the Effect of Ascorbic, Malic and Succinic Acids on Radiation-Induced Oxidative Stress in A549 Cells2024