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Genotoxic and cytotoxic effects of polyethylene microplastics on human peripheral blood lymphocytes
Hayal Çobanoğlu1, Murat Belivermiş2, Ercan Sıkdokur2
1Health Services Vocational College, Çanakkale Onsekiz Mart University, 17100, Çanakkale, Turkey.
Abstract:
Currently, we need emerging initial data regarding how plastic exposures affect cellular and molecular components and how such interactions will be crucial for human health. We aimed to determine the genotoxic and cytotoxic effects of microplastic (MPs,10-45 μm, polyethylene) on human peripheral lymphocytes by using the cytokinesis-block micronucleus cytome (CBMN) assay, which is a comprehensive method to reveal a range of mechanisms, not only diseases but also response to environmental exposures. We measured micronucleation (MN), nucleoplasmic bridge formation (NPB), and nuclear bud formation (NBUD) in human peripheral blood lymphocytes. We also measured the cytokinesis-block proliferation index (CBPI) to calculate cytostasis, which indicates cytotoxicity in lymphocytes treated with five different MPs concentrations for 48 h. Even lower concentrations of MPs increased the level of genomic instability. We found that the in vitro MP exposure significantly increased MN, NPB, and NBUD frequencies. Since we investigated the effect of larger particles relative to the lymphocytes, mechanic interaction of MPs with cells, the release of monomer and additives from MPs could be suggested as possible mechanisms accounting for increasing genomic instabilities. We did not observe a decrease in the cell proliferation index, indicating a lack of MPs' cytotoxic potential. To the best of our knowledge, our study is the first to identify MPs' genotoxic potential in human peripheral blood lymphocytes. We suggested further studies to investigate the genotoxic and cytotoxic potential of smaller plastics and the chronic effect of MP on the human population.
Insights
Microplastics (MPs) show genotoxic potential in human lymphocytes, increasing genomic instability. However, these microplastics did not demonstrate cytotoxic effects on cell proliferation.
Area of Science:
- Environmental Health
- Toxicology
- Cell Biology
Background:
- Growing concern over plastic pollution necessitates understanding its impact on human health.
- Microplastic (MP) exposure requires investigation for cellular and molecular effects.
Purpose of the Study:
- To determine the genotoxic and cytotoxic effects of polyethylene microplastics (MPs) on human peripheral lymphocytes.
- To assess genomic instability markers and cell proliferation following MP exposure.
Main Methods:
- Utilized the cytokinesis-block micronucleus cytome (CBMN) assay on human peripheral blood lymphocytes.
- Measured micronucleation (MN), nucleoplasmic bridge (NPB), and nuclear bud (NBUD) formation.
- Assessed cell proliferation using the cytokinesis-block proliferation index (CBPI) after 48h MP exposure.
Main Results:
- In vitro MP exposure significantly increased frequencies of MN, NPB, and NBUD, indicating genotoxicity.
- Genomic instability was elevated even at lower MP concentrations.
- No significant decrease in the cell proliferation index (CBPI) was observed, suggesting a lack of cytotoxicity.
Conclusions:
- This study is the first to identify the genotoxic potential of microplastics in human peripheral blood lymphocytes.
- Mechanisms may involve mechanical interaction or the release of monomers/additives from MPs.
- Further research is recommended for smaller plastic particles and chronic exposure effects.

