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A Method to Study the Impact of Chemically-induced Ovarian Failure on Exercise Capacity and Cardiac Adaptation in Mice
Published on: April 7, 2014
Accelerated ovarian failure induced by 4-vinyl cyclohexene diepoxide in Nrf2 null mice
Xiaoming Hu1, Jenny R Roberts, Patrick L Apopa
1Receptor Biology Laboratory, TMBB/HELD/NIOSH/CDC, Mailstop 3014, 1095 Willowdale Rd., Morgantown, WV 26505, USA.
Abstract:
Genetic and biochemical analyses have uncovered an essential role for nuclear factor erythroid 2-related factor 2 (Nrf2) in regulating phase II xenobiotic metabolism and antioxidant response. Here we show that Nrf2 protects against the ovarian toxicity of 4-vinylcyclohexene diepoxide (VCD) in mice. Nrf2-/- female mice exposed to VCD exhibit an age-dependent decline in reproduction leading to secondary infertility accompanied by hypergonadotropic hypogonadism after 30 weeks of age. VCD is shown to selectively destroy small ovarian follicles, resulting in early depletion of functional follicles. Treatment with VCD induces apoptotic death in cultured cells and in ovarian follicles, suggesting apoptosis as a mechanism of follicle loss. Loss of Nrf2 function blocks the basal and inducible expression of microsomal epoxide hydrolase, a key enzyme in the detoxification of VCD, and increases the oxidative stress in cells that is further exacerbated by VCD. Foxo3a, a repressor in the early stages of follicle activation, displays reduced expression in Nrf2-/- ovaries, causing accelerated growth of follicles in the absence of exposure to exogenous chemicals. Furthermore, Foxo3a is degraded through the 26S proteasome pathway in untreated cells and is induced by VCD via both Nrf2-dependent transcription and protein stabilization. This study demonstrates that Nrf2 serves as an essential sensor and regulator of chemical homeostasis in ovarian cells, protecting the cells from toxic chemicals by controlling metabolic detoxification, reactive oxygen species defense, and Foxo3a expression. In addition, these findings raise the possibility that exposure to environmental or occupational ovotoxicants plays a role in the premature ovarian failure commonly associated with infertility and premature aging in women.
Insights
Nuclear factor erythroid 2-related factor 2 (Nrf2) protects against ovarian toxicity from chemicals like VCD. Loss of Nrf2 function leads to infertility and follicle loss, highlighting Nrf2
Area of Science:
- Reproductive toxicology
- Molecular toxicology
- Biochemistry
Background:
- Nuclear factor erythroid 2-related factor 2 (Nrf2) is crucial for antioxidant and detoxification pathways.
- Ovarian toxicity induced by 4-vinylcyclohexene diepoxide (VCD) leads to infertility.
- The role of Nrf2 in protecting ovarian cells from chemical insult is not well understood.
Purpose of the Study:
- To investigate the protective role of Nrf2 against VCD-induced ovarian toxicity in mice.
- To elucidate the mechanisms by which Nrf2 influences ovarian follicle dynamics and chemical detoxification.
Main Methods:
- Genetic knockout mice (Nrf2-/-) and wild-type littermates were exposed to VCD.
- Reproductive parameters, follicle counts, and apoptosis were assessed.
- Expression levels of key enzymes (microsomal epoxide hydrolase) and transcription factors (Foxo3a) were analyzed.
- Cellular oxidative stress markers were measured.
Main Results:
- Nrf2-/- female mice exposed to VCD developed age-dependent infertility and hypergonadotropic hypogonadism.
- VCD selectively destroyed small ovarian follicles, leading to premature depletion.
- Nrf2 deficiency impaired VCD detoxification via microsomal epoxide hydrolase and increased oxidative stress.
- Foxo3a expression was reduced in Nrf2-/- ovaries, leading to accelerated follicle growth, and VCD modulated Foxo3a via Nrf2-dependent pathways.
Conclusions:
- Nrf2 is essential for protecting ovarian cells against chemical toxicity by regulating detoxification, antioxidant defense, and Foxo3a expression.
- Impaired Nrf2 function exacerbates VCD-induced ovarian damage and infertility.
- These findings suggest environmental ovotoxicants may contribute to premature ovarian failure and infertility.
