A prefrontal cortex-lateral hypothalamus circuit controls stress-driven increased food intake
Publication date
2026-05-25
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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 (LHAVGLUT2) neurons, but that social stress preferentially engages mPFC-LHAVGLUT2 neurons and causes plasticity at mPFC-LHAVGLUT2 synapses. Specifically, stress weakens mPFC synapses onto LHAVGLUT2 neurons that curtail food intake, while strengthening mPFC synapses onto midbrain-projecting LHAVGLUT2 neurons linked to stress-eating. We show that LHAVGLUT2 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.
Keywords
General Chemistry, General Biochemistry,Genetics and Molecular Biology, General, General Physics and Astronomy
Citation
Supiot, L F, Kooij, K L, Du, W, Benschop, A A C, Nicolson, A S J, Haak, R, Wolterink-Donselaar, I G, Luijendijk, M C M, Riga, D, Adan, R A H, Poorthuis, R B & Meye, F J 2026, 'A prefrontal cortex-lateral hypothalamus circuit controls stress-driven increased food intake', Nature Communications, vol. 17, no. 1, 4620. https://doi.org/10.1038/s41467-026-71073-z