Related Experiment Video
Updated: Jul 29, 2026

Screening Bioactive Nanoparticles in Phagocytic Immune Cells for Inhibitors of Toll-like Receptor Signaling
Published on: July 26, 2017
Cellular response of THP-1 macrophages to polystyrene microplastics exposure
Shramana Koner1, Ida Florance1, Amitava Mukherjee1
1Center for Nanobiotechnology, Vellore Institute of Technology, Vellore 632014, Tamil Nadu, India.
Abstract:
Microplastic in the environment have the capability to reach the human immune system via the ingestion, inhalation and direct contact. Polystyrene (PS) is one of the most widely used plastics, which is made up by polymerization of styrene monomers. Mounting evidences on the presence of microplastics in blood clearly indicate their access to macrophages that are major component of the immune system. However, data on the response of macrophages to microplastics exposure are limited. Our study reports the response of human macrophages transformed by PMA (phorbol 12-myristrate 13-acetate) to exposure to PSNPs of size range (≤ 450 nm). The polystyrene particles utilized in this study, were formulated from beads to powder by grinding and filtering the particles to acquire a range of size ≤ 450 nm particles with deionized water. This size variation used in this experiment imitates the size of plastic that humans can ingest plastic particles through food that gets fragmented from plastic cups and plates. Here we report that exposure to PSNPs (50-500 µg/mL) significantly decreased the viability of human macrophages. In addition, PSNPs (500 µg/mL) induced oxidative stress and decrease cell proliferation. Exposure to PSNPs decrease the membrane potential of mitochondria and caused damage to the DNA of macrophages. Overall, our study reports the differential toxic effects of PSNPs on human macrophages, delineating the potential risks of PSNPs exposure to human health.
Insights
Polystyrene nanoparticles (PSNPs) harm human immune cells. Exposure to PSNPs significantly reduced macrophage viability, induced oxidative stress, and damaged DNA, indicating potential health risks.
Area of Science:
- Immunotoxicology
- Environmental Health
- Materials Science
Background:
- Microplastics can enter the human body, potentially affecting the immune system.
- Polystyrene (PS) is a common plastic, and its microparticles (PSNPs) have been detected in human blood.
- Limited data exists on how macrophages, key immune cells, respond to microplastic exposure.
Purpose of the Study:
- To investigate the effects of polystyrene nanoparticles (PSNPs) on human macrophages.
- To determine the toxicological impact of PSNPs on macrophage viability, proliferation, and cellular integrity.
Main Methods:
- Human macrophages were transformed using PMA (phorbol 12-myristate 13-acetate).
- Macrophages were exposed to PSNPs (≤ 450 nm) at varying concentrations (50-500 µg/mL).
- Assessed macrophage viability, oxidative stress, cell proliferation, mitochondrial membrane potential, and DNA damage.
Main Results:
- PSNP exposure significantly decreased human macrophage viability.
- Higher concentrations (500 µg/mL) induced oxidative stress and reduced cell proliferation.
- PSNPs diminished mitochondrial membrane potential and caused DNA damage in macrophages.
Conclusions:
- Polystyrene nanoparticles exhibit differential toxic effects on human macrophages.
- PSNP exposure poses potential risks to human health due to immunotoxicity.
More Related Videos
07:55A Macrophage Reporter Cell Assay to Examine Toll-Like Receptor-Mediated NF-kB/AP-1 Signaling on Adsorbed Protein Layers on Polymeric Surfaces
Published on: January 7, 2020
06:38Macrophage Differentiation and Polarization into an M2-Like Phenotype using a Human Monocyte-Like THP-1 Leukemia Cell Line
Published on: August 2, 2021