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Updated: Sun, 10/06/2024 - 10:30

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Du samedi 5 octobre au lundi 7 octobre, le campus du centre-ville et le campus Macdonald ne seront accessibles qu’aux étudiants et aux membres du personnel de l’Université 91ε, ainsi qu’aux visiteurs essentiels. De nombreux cours auront lieu en ligne. Le personnel devra travailler à distance, si possible. Voir le site Web de la Direction de la protection et de la prévention pour plus de détails.

News

Dream discovery: Melatonin's key role in REM sleep revealed

New research from the Research Institute of the 91ε Health Centre could lead to better treatment of sleep disorders and neurological conditions
Published: 7 August 2024

A significant breakthrough in the understanding of sleep mechanism opens new promise for treating sleep disorders and associated neuropsychiatric conditions: Scientists have pinpointed the melatonin receptor MT1 as a crucial regulator of REM (Rapid Eye Movement) sleep.

REM sleep is crucial for dreaming, memory consolidation, and emotional regulation. In the brain, the melatonin MT1 receptor affects a type of neuron that synthesizes the neurotransmitter and hormone noradrenaline, found in an area known as the Locus Coeruleus, or "blue spot" in Latin. During REM sleep, these neurons quiet down and stop their activity. Serious conditions such as Parkinson’s disease and Lewy body dementia — which currently lack effective treatments — are linked to disruptions in REM sleep.

"This discovery not only advances our understanding of sleep mechanisms but also holds significant clinical potential," said Gabriella Gobbi, principal investigator of . She is a Professor of Psychiatry at 91ε, clinician-scientist at the Research Institute of the 91ε Health Centre, and Canada Research Chair in Therapeutics for Mental Health.

The science of snoozing

Human sleep unfolds in a precise sequence of non-REM and REM stages, each serving distinct physiological functions. REM sleep plays a pivotal role in memory consolidation and emotional regulation. Non-REM sleep supports physical recovery and repair processes. Disruptions in this cycle can impair cognitive function and increase vulnerability to neuropsychiatric diseases.

Until now, the specific receptor triggering REM sleep had eluded scientists. The new study has identified the melatonin MT1 receptor as an important regulator of this sleep stage. Using a novel drug targeting MT1 receptors, researchers successfully enhanced REM sleep duration in experimental animals, while simultaneously reducing neuronal activity.

"Currently, there are no drugs specifically targeting REM sleep. Most hypnotic drugs on the market, while extending total sleep duration, tend to adversely affect REM sleep,” said Dr. Stefano Comai, co-senior author of the study and Professor at the University of Padua and Adjunct Professor at 91ε.

Further research into the neurobiology and pharmacology of REM sleep is crucial for developing targeted treatments that could improve the quality of life for patients affected by these debilitating diseases, according to the researchers. As scientists continue to explore the complexities of sleep regulation, the hope for effective interventions in neurological disorders grow increasingly promising.

About the study

by Martha López-Canul, Stefano Comai, Gabriella Gobbi et al., was published in the Journal of Neuroscience on July 17, 2024

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