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February 5, 2026Applied Biosciences6 citationsOpen Access

The Allium cepa Assay as a Versatile Tool for Genotoxicity and Cytotoxicity: Methods, Applications, and Comparative Insight

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DTDra. Olivia Torres-BugarínIGIsaac Gómez-FerreyraMCMario Contreras-Dueñas

Key Points

  • This research aims to synthesize methodologies and applications of the Allium cepa assay, focusing on its use in environmental monitoring and nanotoxicology.
  • Employs an exploratory analytical approach to assess the Allium cepa assay across various studies.
  • Organizes literature from scientific databases to showcase methodological diversity.
  • Highlights the performance of different cytogenotoxic biomarkers.
  • Allium cepa assay demonstrates simplicity and numerous cytogenotoxic markers.
  • It poses minimal ethical concerns, making it ideal for low-resource settings.
  • Future studies aim at standardizing methodologies and integrating the assay with molecular approaches.

Abstract

Background: The Allium cepa test is a widely used, cost-effective, and versatile model for assessing cytogenotoxicity. Cytotoxicity is determined through changes in root growth and the mitotic index, while genotoxicity is identified through chromosomal aberrations such as breaks, bridges, and micronuclei. Objective: To synthesize the methodological principles, applications, and interpretation of the assay’s endpoints, with emphasis on environmental monitoring, nanotoxicology, and the evaluation of emerging materials. Methods: An exploratory analytical approach was applied to identify and compare studies employing the Allium cepa assay across different contexts. The literature, selected from scientific databases, was organized to highlight methodological diversity and biomarker performance. Conclusions: Compared with other models, Allium cepa stands out for its simplicity, the availability of multiple cytogenotoxic markers, and its minimal ethical constraints, making it especially suitable for research in low-infrastructure settings. Future studies should work toward the international standardization of methodologies, the integration of this model with molecular and omics-based approaches, and its incorporation into predictive frameworks for environmental and human health risk assessment. In an increasingly complex toxicological landscape, Allium cepa emerges as a pivotal tool for enhancing toxicological surveillance and safeguarding biological systems.

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Cite This Study

Torres-Bugarín et al. (2026) studied this question.

synapsesocial.com/papers/698433baf1d9ada3c1fb11e6https://doi.org/10.3390/applbiosci5010009
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