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.

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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