Toxicological and transcriptomic-based analysis of monensin and sulfamethazine co-exposure on male SD rats

Junjie Zhao1, Yehui Luan1, Yanan Chen1

  • 1College of Veterinary Medicine, China Agricultural University, Beijing 100093, China.

Insights

Veterinary antibiotics monensin and sulfamethazine co-exposure caused significant hepatotoxicity in rats. This toxicity stemmed from disruptions in linoleic acid, retinol metabolism, and CYP450 enzyme activity.

Area of Science:

  • Environmental Toxicology
  • Pharmacology
  • Genomics

Background:

  • Antibiotic residues are emerging environmental contaminants.
  • Toxicological effects of co-exposed veterinary antibiotics are understudied.

Purpose of the Study:

  • To investigate the combined toxicity of monensin and sulfamethazine in rats.
  • To elucidate the underlying molecular mechanisms of joint antibiotic toxicity.

Main Methods:

  • Rats were exposed to monensin and sulfamethazine (single or combined) for 28 days.
  • Evaluated body weight, hematology, blood biochemistry, organ coefficients, and histopathology.
  • Transcriptomic analysis identified differentially expressed genes and pathways.

Main Results:

  • Combined exposure reduced weight gain and increased alkaline phosphatase.
  • Significant increases in relative liver and kidney weights observed.
  • Histopathology revealed severe liver lesions in high-dose combined exposure.
  • Transcriptomics identified altered sterol biosynthesis, retinol metabolism, and xenobiotic metabolism via cytochrome P450.

Conclusions:

  • Mixed contamination of monensin and sulfamethazine induces hepatotoxicity.
  • Toxicity is linked to interference with linoleic acid, retinol metabolism, and CYP450 pathways.
  • Cyp1a2, Cyp2c61, Ugt1a3, and Ugt1a5 identified as potential key genes in antibiotic metabolism and toxicity.