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Tetrachloro-1,4-benzoquinone disrupts oocyte quality through mitochondrial dysfunction and oxidative stress
Bing Han1, Liting Liu1, Guanxiong Wang1
1Department of Obstetrics and Gynecology, the First Affiliated Hospital of Anhui Medical University, No 218 Jixi Road, Hefei, Anhui 230022, China; NHC Key Laboratory of Study on Abnormal Gametes and Reproductive Tract, Anhui Medical University, No 81 Meishan Road, Hefei, Anhui 230032, China; School of Public Health, Anhui Medical University, No 81 Meishan Road, Hefei, Anhui 230032, China.
None:
Disinfection byproducts (DBPs) are emerging environmental contaminants with potential reproductive toxicity; however, the effects of tetrachloro-1,4-benzoquinone (TCBQ) on female fertility remain poorly understood. Using a mouse exposure model integrated with ovarian histological analysis, oocyte maturation assays, mitochondrial functional assessment, oxidative stress evaluation, and transcriptomic profiling, we investigated how TCBQ exposure affects follicular development and oocyte competence in pubertal female mice. TCBQ-exposed oocytes displayed abnormal spindle assembly and chromosome misalignment accompanied by mitochondrial dysfunction and early apoptosis. Transcriptomic analysis revealed a significant dysregulation of oxidative phosphorylation and antioxidant defense pathways in TCBQ-treated oocytes. Notably, co-treatment with melatonin reduced reactive oxygen species (ROS) accumulation, restored adenosine triphosphate (ATP) levels, and rescued meiotic progression. Melatonin supplementation partially rescued TCBQ-induced oocyte defects, with reduced oxidative stress and improved mitochondrial function. Collectively, these findings identify TCBQ as a potential reproductive toxicant that impairs oocyte competence through oxidative stress-associated mitochondrial dysfunction and meiotic disruption.
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