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Evaluation of potential toxicity of polyethylene microplastics on human derived cell lines
Ravi Gautam1, JiHun Jo1, Manju Acharya1
1Department of occupational health, College of Bio and Medical Sciences, Daegu Catholic University, Gyeongsan 38430, Republic of Korea.
Abstract:
Microplastics bare of major concern for environmental conservation and animal welfare in recent years as its use has increased tremendously. Polyethylene microplastics (PE-MPs) are the most common microplastics and could get exposed to humans via different routes with oral>inhalation>dermal. Internalization of MPs through epithelial tissue could expose MPs to various cells such as dendritic cells, macrophages/monocytes, and/or T cells. In this study, we aimed at identifying the effects of two different sized (30.5 ± 10.5 and 6.2 ± 2.0 μm) PE-MPs on different human cell lines representing different tissues or cells that get exposed to MPs directly or indirectly. Six cell lines were cultured with different concentrations of PE-MPs and cell viability, intracellular reactive oxygen species (ROS), nitric oxide (NO), and cytokines were measured. PE-MPs did not substantially lower the cell viability of cells however highest concentration (1000 μg/mL) of both sized MPs slightly reduced cell viability in intestinal epithelial Caco-2 and lung epithelial A549 cells. Both sized PE-MPs induced higher NO in all the cell lines and upregulation of ROS generation was demonstrated at THP-1, Jurkat, and U937 immune cell lines. A pro-inflammatory cytokine response was seen in HaCaT keratinocyte cells when cultured with PE-MPs whereas the opposite effect was observed in THP-1 and U937 cells except with THP-1 cells cultured with larger-sized MPs. We found that the PE-MPs do not have the same effects on all kinds of cells and tissues exposed and the immune modulation is not necessarily inflammatory. Thus, this study gives insight into why more detailed studies focused on exposure routes and organ-specific effects of different MPs need to be carried out.
Insights
Polyethylene microplastics (PE-MPs) show varied effects on human cells. While not significantly reducing cell viability, PE-MPs induced nitric oxide and reactive oxygen species in immune cells, with complex cytokine responses depending on cell type and microplastic size.
Area of Science:
- Environmental Science
- Toxicology
- Cell Biology
Background:
- Increasing use of microplastics raises environmental and health concerns.
- Polyethylene microplastics (PE-MPs) are prevalent and can enter the human body via multiple exposure routes.
- Internalized microplastics can interact with various human cells, including immune cells.
Purpose of the Study:
- To investigate the effects of two different sized PE-MPs on various human cell lines.
- To assess cell viability, reactive oxygen species (ROS), nitric oxide (NO), and cytokine production in response to PE-MPs.
Main Methods:
- Six human cell lines representing different tissues were cultured with varying concentrations of PE-MPs (30.5 ± 10.5 μm and 6.2 ± 2.0 μm).
- Measurements included cell viability, intracellular ROS, NO, and cytokine levels.
Main Results:
- PE-MPs did not significantly decrease cell viability, except at the highest concentration (1000 μg/mL) in intestinal (Caco-2) and lung (A549) cells.
- Both sizes of PE-MPs increased NO production across all cell lines.
- ROS generation was upregulated in THP-1, Jurkat, and U937 immune cells.
- Cytokine responses were complex: pro-inflammatory in HaCaT cells, but anti-inflammatory or mixed in THP-1 and U937 cells, depending on MP size.
Conclusions:
- PE-MPs exhibit cell- and tissue-specific effects.
- Immune modulation by PE-MPs is not uniformly inflammatory.
- Further research on exposure routes and organ-specific effects of different microplastics is warranted.
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