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Evaluation of Mammary Gland Development and Function in Mouse Models
Published on: July 21, 2011
Perimenopausal and Menopausal Mammary Glands In A 4-Vinylcyclohexene Diepoxide Mouse Model
Kohei Saeki1,2, Desiree Ha1, Gregory Chang1
1Department of Cancer Biology and Molecular Medicine, Beckman Research Institute of City of Hope, 1500 East Duarte Road, Duarte, CA, 91010, USA.
Abstract:
As both perimenopausal and menopausal periods are recognized critical windows of susceptibility for breast carcinogenesis, development of a physiologically relevant model has been warranted. The traditional ovariectomy model causes instant removal of the entire hormonal repertoire produced by the ovary, which does not accurately approximate human natural menopause with gradual transition. Here, we characterized the mammary glands of 4-vinylcyclohexene diepoxide (VCD)-treated animals at different time points, revealing that the model can provide the mammary glands with both perimenopausal and menopausal states. The perimenopausal gland showed moderate regression in ductal structure with no responsiveness to external hormones, while the menopausal gland showed severe regression with hypersensitivity to hormones. Leveraging the findings on the VCD model, effects of a major endocrine disruptor (polybrominated diphenyl ethers, PBDEs) on the mammary gland were examined during and after menopausal transition, with the two exposure modes; low-dose, chronic (environmental) and high-dose, subacute (experimental). All conditions of PBDE exposure did not augment or compromise the macroscopic ductal reorganization resulting from menopausal transition and/or hormonal treatments. Single-cell RNA sequencing revealed that the experimental PBDE exposure during the post-menopausal period caused specific transcriptomic changes in the non-epithelial compartment such as Errfi1 upregulation in fibroblasts. The environmental PBDE exposure resulted in similar transcriptomic changes to a lesser extent. In summary, the VCD mouse model provides both perimenopausal and menopausal windows of susceptibility for the breast cancer research community. PBDEs, including all tested models, may affect the post-menopausal gland including impacts on the non-epithelial compartments.
Insights
A new 4-vinylcyclohexene diepoxide (VCD) mouse model accurately mimics human menopause, offering critical insights into breast cancer susceptibility. Polychlorinated diphenyl ethers (PBDEs) exposure during menopause impacts mammary gland non-epithelial cells, not ductal structure.
Area of Science:
- Reproductive biology
- Endocrinology
- Cancer research
Background:
- Menopause and perimenopause are critical windows for breast cancer development.
- Traditional ovariectomy models do not accurately reflect natural menopause.
- A physiologically relevant model is needed to study hormonal changes and breast carcinogenesis.
Purpose of the Study:
- To characterize a novel 4-vinylcyclohexene diepoxide (VCD)-induced mouse model for perimenopausal and menopausal mammary gland states.
- To investigate the effects of polybrominated diphenyl ethers (PBDEs) on the mammary gland during menopausal transition.
- To assess PBDEs' impact on ductal reorganization and cellular changes in the mammary gland.
Main Methods:
- Induction of perimenopausal and menopausal states using VCD in mice.
- Exposure to PBDEs via chronic low-dose (environmental) and subacute high-dose (experimental) modes.
- Analysis of mammary gland morphology, hormonal responsiveness, and transcriptomic changes using single-cell RNA sequencing.
Main Results:
- The VCD model successfully replicated perimenopausal and menopausal mammary gland characteristics.
- PBDE exposure did not alter macroscopic ductal reorganization during menopausal transition.
- Experimental PBDE exposure induced specific transcriptomic changes in non-epithelial cells, such as fibroblast Errfi1 upregulation, in post-menopausal glands.
Conclusions:
- The VCD mouse model provides a valuable tool for studying breast cancer during menopausal transition.
- PBDEs may influence the post-menopausal mammary gland, particularly non-epithelial compartments, despite not affecting ductal structure.
- Further research is warranted to understand the long-term implications of PBDEs on mammary gland health during and after menopause.

