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Polystyrene microplastics induce apoptosis and necroptosis in swine testis cells via ROS/MAPK/HIF1α pathway
Xu Wang1, Xinyu Zhang1, Kexin Sun1
1College of Veterinary Medicine, Northeast Agricultural University, Harbin, China.
Abstract:
Microplastics (MPs) generally refer to the plastic fragments or particles smaller than 5 mm in diameter, which are closely concerned due to their widespread presence in the environment. Recent studies have shown that MPs have a serious threat on the reproductive health of organisms. Pigs are often selected as the model animals because of their high similarity to human tissues and organs. However, there are no reports on the effects and mechanisms of MPs exposure on swine germ cells. In the present study, we established swine testis (ST) cell models exposed to 250, 500, and 1000 μg/ml polystyrene microplastics (PS-MPs, 1-10 μm), respectively. The findings revealed that PS-MPs reduced cell viability dose-dependently. Acridine orange/ethidium bromide staining and flow cytometry results indicated the occurrence of apoptosis and necrosis in ST cells under PS-MPs exposure, and the expression changes of relevant marker genes (B-cell lymphoma-2, Bcl-2 Associated X, Caspase-3, Caspase-9, Receptor-interacting protein kinase 1, Receptor-interacting protein kinase 3, Mixed lineage kinase domain-like, and Caspase-8) were clarified via quantitative real-time PCR and western blot. Further mechanistic studies found that PS-MPs treatment induced excessive intracellular reactive oxygen species (ROS) production, which promoted the phosphorylation of mitogen-activated protein kinase (MAPK) pathway-related genes (P38, c-Jun N-terminal kinase, extracellular regulated protein kinases) and activated the downstream gene hypoxia-inducible factor (HIF1α). In conclusion, our study suggests that PS-MPs treatment causes apoptosis and necroptosis in ST cells via ROS/MAPK/HIF1α signaling pathway.
Insights
Polystyrene microplastics (PS-MPs) harm swine germ cells, reducing viability and causing cell death. This damage occurs through the ROS/MAPK/HIF1α signaling pathway, highlighting microplastic risks to reproductive health.
Area of Science:
- Environmental Science
- Toxicology
- Reproductive Biology
Background:
- Microplastics (MPs) are pervasive environmental contaminants.
- MPs pose risks to organismal reproductive health.
- Swine are valuable models for human physiology, yet MP effects on their germ cells are unknown.
Purpose of the Study:
- To investigate the impact of polystyrene microplastics (PS-MPs) on swine testis (ST) cells.
- To elucidate the mechanisms underlying PS-MP-induced toxicity in ST cells.
Main Methods:
- Established ST cell models exposed to varying concentrations of PS-MPs (1-10 μm).
- Assessed cell viability, apoptosis, and necrosis using acridine orange/ethidium bromide staining and flow cytometry.
- Analyzed gene expression changes (Bcl-2, Bax, Caspases, RIPK1/3, MLKL, Caspase-8) via qRT-PCR and Western blot.
- Investigated reactive oxygen species (ROS) production, MAPK pathway activation, and HIF1α expression.
Main Results:
- PS-MPs reduced ST cell viability in a dose-dependent manner.
- PS-MPs induced apoptosis and necrosis in ST cells.
- PS-MP exposure altered the expression of key cell death and survival genes.
- PS-MPs increased intracellular ROS, activated the MAPK pathway (p38, JNK, ERK), and upregulated HIF1α.
Conclusions:
- PS-MPs induce apoptosis and necroptosis in swine testis cells.
- The ROS/MAPK/HIF1α signaling pathway mediates PS-MP toxicity in ST cells.
- This study reveals a critical mechanism of microplastic reproductive toxicity in a mammalian model.

