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April 27, 2026Environmental Toxicology2 citations

Combined Toxicity of Polyamide Microplastics and Fenitrothion Impairs Growth, Intestinal Integrity, and GH – IGF Axis in Nile Tilapia

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MAMobassir Bin AnwarMHMd Ahsanul HaqueMZMd Mahiuddin Zahangir

Key Points

  • This research aims to evaluate the effects of coexposure to polyamide microplastics and fenitrothion on Nile tilapia.
  • Juvenile Nile tilapia (Oreochromis niloticus) were exposed to 10 mg/L PA-MPs and 0.3 mg/L fenitrothion for 42 days.
  • Assessments included growth performance, feed efficiency, and histopathological analysis of intestinal tissue.
  • Molecular analysis of gh, igf-1, and igf-2 gene expression was conducted.
  • Coexposure led to a significant reduction in somatic growth compared to single exposures.
  • Marked depletion of intestinal goblet cells and enterocytes was observed, indicating severe intestinal disruption.
  • Transcripts of gh, igf-1, and igf-2 were notably downregulated in the coexposed group, indicating impaired hormonal regulation.

Abstract

The pervasive contamination of aquatic ecosystems by microplastics (MPs) and organophosphate pesticides raises concerns about their combined impacts on fish physiology, yet empirical evidence remains limited. This study investigated the coexposure effects of polyamide microplastics (PA-MPs, 10 mg/L) and the insecticide fenitrothion (0.3 mg/L) on growth performance, intestinal integrity, and GH-IGF axis regulation in juvenile Nile tilapia (Oreochromis niloticus) over 42 days. Coexposure markedly suppressed somatic growth (weight gain and specific growth rate) and feed efficiency (feed conversion ratio; FCR), exceeding the adverse effects observed under single exposures. Histopathological evaluation revealed significant depletion of goblet cells and enterocytes per villus, indicating pronounced disruption of intestinal epithelium. At the molecular level, gh, igf-1, and igf-2 transcripts were substantially downregulated in the coexposed group, reflecting coordinated impairment of the somatotropic axis. Principal component analysis demonstrated a strong interrelationship among growth, intestinal cellular integrity, and gene expression, collectively delineating the severity of chemical stress. These results suggest potential combined toxicity of co-occurring MPs and organophosphate pesticides, emphasizing their capacity to compromise aquaculture productivity and ecosystem health.

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Cite This Study

Anwar et al. (2026) studied this question.

synapsesocial.com/papers/69eefd82fede9185760d42f9https://doi.org/10.1002/tox.70111
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