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February 24, 2026Scientific Reports7 citationsOpen Access

Impact of polystyrene microplastic exposure at low doses on male fertility: an experimental study in rats

AAAisha H. A. AlsenousyAKAsmaa Hassan Younis KhalafHIHesham Ibrahim

Key Points

  • This study aims to evaluate the effects of polystyrene microplastic exposure on male fertility in rats.
  • Adult male rats were divided into six groups: one control and five receiving varying doses of polystyrene microplastics (0.1 to 40 µg/kg) for 45 days.
  • Assessment included semen quality, reproductive hormones, oxidative stress markers, and testicular histology.
  • Mitochondrial biogenesis markers and inflammatory indicators were measured to evaluate cellular effects.
  • Exposure to polystyrene microplastics decreased sperm count and motility, and increased the number of abnormal sperm.
  • Reproductive hormone levels were disrupted, showing reduced testosterone and increased FSH and LH.
  • Mitochondrial function markers were downregulated, while oxidative stress indicators were significantly elevated, along with testicular tissue damage.

Abstract

Abstract Polystyrene microplastics (PS-MPs), widely used in commercial and pharmaceutical products, are emerging endocrine-disrupting pollutants with potential reproductive toxicity. This study evaluated the dose-dependent effects of PS-MPs on adult male rats by assessing semen quality, reproductive hormones, oxidative stress, mitochondrial and inflammatory markers, and testicular histology. Rats were assigned to six groups: a control group and five groups receiving PS-MPs orally (0.1, 1, 10, 20, or 40 µg/kg BW) for 45 days. PS-MP exposure reduced sperm count and motility, increased abnormal sperm, decreased testosterone, and elevated FSH and LH. Mitochondrial biogenesis/function markers (PGC-1α, UCP1, TFAM) were downregulated, while NF-κB, caspase-3, and TBARS were increased, accompanied by significant depletion of antioxidant defenses (GSH, GR, GPx, SOD, GST, CAT, TAC) and pronounced testicular histopathology. These effects were dose-dependent, and PS-MPs were detected in testicular tissue by pyrolysis-GC/MS at the doses of 10 µg/kg and higher. Collectively, the data identify mitochondrial dysfunction–driven oxidative stress and associated inflammation as a key mechanism by which PS-MPs induce spermatogenic failure, hormonal disruption, and testicular damage, highlighting their potential as potent male reproductive toxicants.

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Cite This Study

Alsenousy et al. (2026) studied this question.

synapsesocial.com/papers/699d3fd9de8e28729cf64aedhttps://doi.org/10.1038/s41598-026-38385-y
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