News Release

Female mice are able to smell male pheromones only when ready to mate

Peer-Reviewed Publication

Cell Press

Hormone Changes across the Female Estrous Cycle

image: Hormone changes across the female estrous cycle lead to selective blocking of sensory input irrelevant to non-ovulating females, i.e., male pheromones. Sensory silencing is therefore a mechanism for coordinating internal physiology with salient environmental inputs. view more 

Credit: Dey et al./Cell 2015

An American study in mice reveals that hormones that dictate a female's attraction towards males do so in part by controlling her sense of smell. The findings, published June 4 in Cell, provide an example of how hormones may use the nose to circumvent the brain and influence behavior.

The investigators analyzed female mice at various stages of the ovulation cycle and found that when a female is not ready for reproduction, her hormones (specifically progesterone) block her ability to sense the smell of male pheromones. These hormones diminish during ovulation, eventually allowing a female mouse to smell a potential partner. When ovulation ends, the cycle repeats, and she is again rendered "odor-blind" to males.

"Here we find--in the mouse--that the nose is not simply a sense organ, passively vacuuming up all stimuli and transmitting that information to the brain," says senior author Lisa Stowers of the Department of Molecular and Cellular Neuroscience at The Scripps Research Institute in La Jolla. "Instead, hormonal signals from the body act directly on the nose to make a decision about what information to send to the brain. It is quite surprising that the nose, and not the brain, would be making such important decisions."

She notes that humans are not known to detect pheromones, but her research team is investigating whether human olfactory neurons are similarly able to sense internally circulating hormones.

"We are also currently looking to see if the nose has the ability to make any other behavioral decisions that vary with other internal-state hormone profiles such as stress," Stowers says.


This work was supported by the National Institutes of Health, the Ellison Medical Foundation and the Wellcome Trust.

Cell, Dey et al. "Cyclic regulation of sensory perception by a female hormone alters behaviour"

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