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Long-term Behavioral and Reproductive Consequences of Embryonic Exposure to Low-dose Toxicants
Published on: March 6, 2018
Chronic Exposure to Diquat Causes Reproductive Toxicity in Female Mice
Jia-Qing Zhang1, Bin-Wen Gao1, Jing Wang1
1Institute of Animal Husbandry and Veterinary Science, Henan Academy of Agricultural Sciences, Zhengzhou, China.
Abstract:
Diquat is a bipyridyl herbicide that has been widely used as a model chemical for in vivo studies of oxidative stress due to its generation of superoxide anions, and cytotoxic effects. There is little information regarding the toxic effects of diquat on the female reproductive system, particularly ovarian function. Thus, we investigated the reproductive toxic effects of diquat on female mice. Chronic exposure to diquat reduced ovary weights, induced ovarian oxidative stress, resulted in granulosa cell apoptosis, and disrupted oocyte developmental competence, as shown by reactive oxygen species (ROS) accumulation, decreased polar body extrusion rates and increased apoptosis-related genes expression. Additionally, after diquat treatment, the numbers of fetal mice and litter sizes were significantly reduced compared to those of control mice. Thus, our results indicated that chronic exposure to diquat induced reproductive toxicity in female mice by promoting the ROS production of gruanousa cells and ooctyes, impairing follicle development, inducing apoptosis, and reducing oocyte quality. In conclusion, our findings indicate that diquat can be used as a potent and efficient chemical for in vivo studies of female reproductive toxicity induced by oxidative stress. Moreover, the findings from this study will further enlarge imitative research investigating the effect of ovarian damage induced by oxidative stress on reproductive performance and possible mechanisms of action in large domestic animals.
Insights
Diquat herbicide exposure harms female mice reproduction by causing ovarian oxidative stress, granulosa cell apoptosis, and reduced oocyte quality. This study highlights diquat
Area of Science:
- Reproductive Toxicology
- Environmental Health
- Cellular Biology
Background:
- Diquat herbicide is a known inducer of oxidative stress.
- Limited data exists on diquat's impact on female reproductive health.
- Ovarian function is sensitive to oxidative damage.
Purpose of the Study:
- To investigate the reproductive toxic effects of diquat in female mice.
- To elucidate the mechanisms underlying diquat-induced ovarian toxicity.
- To assess the impact on oocyte quality and developmental competence.
Main Methods:
- Chronic oral administration of diquat to female mice.
- Assessment of ovarian weight, oxidative stress markers (ROS), and apoptosis.
- Evaluation of oocyte developmental competence (polar body extrusion, gene expression).
- Analysis of reproductive outcomes (fetal numbers, litter size).
Main Results:
- Diquat exposure reduced ovary weight and increased ovarian oxidative stress.
- Granulosa cell apoptosis and oocyte developmental competence were impaired.
- Reactive oxygen species (ROS) accumulation and apoptosis-related gene expression increased.
- Significant reductions in fetal numbers and litter sizes were observed.
Conclusions:
- Chronic diquat exposure induces reproductive toxicity in female mice.
- Mechanisms include promoting ROS production, impairing follicle development, and reducing oocyte quality.
- Diquat serves as a model chemical for studying oxidative stress-induced female reproductive toxicity.

