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Updated: Nov 19, 2025

A Hyperandrogenic Mouse Model to Study Polycystic Ovary Syndrome
Published on: October 2, 2018
Neurokinin 3 Receptor Antagonism Ameliorates Key Metabolic Features in a Hyperandrogenic PCOS Mouse Model
Irene E Sucquart1, Ruchi Nagarkar1, Melissa C Edwards1
1Fertility and Research Centre, School of Women's & Children's Health, University of New South Wales, Sydney, NSW 2052, Australia.
Abstract:
Polycystic ovary syndrome (PCOS) is a prevalent endocrine condition characterized by a range of endocrine, reproductive, and metabolic abnormalities. At present, management of women with PCOS is suboptimal as treatment is only symptomatic. Clinical and experimental advances in our understanding of PCOS etiology support a pivotal role for androgen neuroendocrine actions in PCOS pathogenesis. Hyperandrogenism is a key PCOS trait and androgen actions play a role in regulating the kisspeptin-/neurokinin B-/dynorphin (KNDy) system. This study aimed to investigate if targeted antagonism of neurokinin B signaling through the neurokinin 3 receptor (NK3R) would reverse PCOS traits in a dihydrotestosterone (DHT)-induced mouse model of PCOS. After 3 months, DHT exposure induced key reproductive PCOS traits of cycle irregularity and ovulatory dysfunction, and PCOS-like metabolic traits including increased body weight; white and brown fat pad weights; fasting serum triglyceride and glucose levels, and blood glucose incremental area under the curve. Treatment with a NK3R antagonist (MLE4901) did not impact the observed reproductive defects. In contrast, following NK3R antagonist treatment, PCOS-like females displayed decreased total body weight, adiposity, and adipocyte hypertrophy, but increased respiratory exchange ratio, suggesting NK3R antagonism altered the metabolic status of the PCOS-like females. NK3R antagonism did not improve circulating serum triglyceride or fasted glucose levels. Collectively, these findings demonstrate that NK3R antagonism may be beneficial in the treatment of adverse metabolic features associated with PCOS and support neuroendocrine targeting in the development of novel therapeutic strategies for PCOS.
Insights
Targeting neurokinin 3 receptor (NK3R) with an antagonist improved metabolic dysfunction in a mouse model of polycystic ovary syndrome (PCOS). However, it did not reverse reproductive issues, suggesting potential for metabolic treatment in PCOS.
Area of Science:
- Endocrinology
- Neuroendocrinology
- Reproductive Medicine
Background:
- Polycystic ovary syndrome (PCOS) is a common endocrine disorder with complex reproductive and metabolic symptoms.
- Current PCOS management is symptomatic, highlighting the need for novel therapeutic targets.
- Androgen neuroendocrine actions are implicated in PCOS pathogenesis, particularly via the kisspeptin/neurokinin B/dynorphin (KNDy) system.
Purpose of the Study:
- To investigate the efficacy of neurokinin 3 receptor (NK3R) antagonism in reversing PCOS traits.
- To assess the impact of NK3R antagonism on reproductive and metabolic abnormalities in a dihydrotestosterone (DHT)-induced PCOS mouse model.
Main Methods:
- A dihydrotestosterone (DHT)-induced mouse model of PCOS was established.
- Mice were treated with a NK3R antagonist (MLE4901).
- Reproductive parameters (cycle regularity, ovulation) and metabolic markers (body weight, fat mass, glucose, triglycerides) were assessed.
Main Results:
- DHT exposure induced PCOS-like reproductive and metabolic traits.
- NK3R antagonist treatment did not improve reproductive dysfunction.
- Treatment reduced body weight, adiposity, and adipocyte size, altering metabolic status but not improving serum lipids or glucose.
Conclusions:
- NK3R antagonism shows potential for treating adverse metabolic features in PCOS.
- Targeting neuroendocrine pathways, specifically NK3R signaling, offers a promising avenue for novel PCOS therapeutics.
- Further research is warranted to explore NK3R antagonism's role in PCOS management.

