A prefrontal cortex-lateral hypothalamus circuit controls stress-driven increased food intake

L L. F. Supiot K K. L. Kooij W W. Du A A. A. C. Benschop A A. S. J. Nicolson R R. Haak I I. G. Wolterink-Donselaar M M. C. M. Luijendijk D D. Riga R R. A. H. Adan R R. B. Poorthuis F F. J. Meye

Abstract

Abstract Stress can drive overconsumption of high-fat foods. The medial prefrontal cortex (mPFC) is implicated in such stress-eating, but the underlying circuit mechanisms remain unclear. Here, we show that mPFC projections to the lateral hypothalamus (LHA) are required for stress-induced fat intake in male mice. We find that mPFC-LHA stimulation in sated states increases fat intake. Social stress acutely engages mPFC-LHA neurons, and inhibiting this pathway selectively prevents stress-driven excess fat intake. Circuit mapping shows that mPFC neurons innervate GABAergic and glutamatergic LHA (LHA VGLUT2 ) neurons, but that social stress preferentially engages mPFC-LHA VGLUT2 neurons and causes plasticity at mPFC-LHA VGLUT2 synapses. Specifically, stress weakens mPFC synapses onto LHA VGLUT2 neurons that curtail food intake, while strengthening mPFC synapses onto midbrain-projecting LHA VGLUT2 neurons linked to stress-eating. We show that LHA VGLUT2 neurons are required downstream mPFC targets for transforming stress into heightened fat intake. Overall, we identify the mPFC-LHA as a multi-branched network, indispensable for stress-eating.

Article Details

Volume / Issue Vol. 17, Issue 1
Published March 31, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (12)

L

L. F. Supiot

K

K. L. Kooij

W

W. Du

A

A. A. C. Benschop

A

A. S. J. Nicolson

R

R. Haak

I

I. G. Wolterink-Donselaar

M

M. C. M. Luijendijk

D

D. Riga

R

R. A. H. Adan

R

R. B. Poorthuis

F

F. J. Meye