bioRxiv · 10.1101/2020.05.01.073205
Obesity-induced astrocyte dysregulation of heterosynaptic plasticity within the orbitofrontal cortex
Abstract
SO_SCPLOWUMMARYC_SCPLOWOverconsumption of highly palatable, energy dense food is considered a key driver of the obesity pandemic. The orbitofrontal cortex (OFC) is critical for reward valuation of gustatory signals, yet how the OFC adapts to obesogenic diets is poorly understood. Here we show that extended access to a cafeteria diet impairs astrocyte glutamate clearance, which leads to a heterosynaptic depression of GABA transmission onto pyramidal neurons of the OFC. This decrease in GABA tone is due to an increase in extrasynaptic glutamate, which acts via metabotropic glutamate receptors to liberate endocannabinoids. This impaired the induction of endocannabinoid-mediated long-term plasticity. In obese rats, this cascade of synaptic impairments was rescued by restoring astrocyte glutamate transport with the nutritional supplement, N-acetylcysteine. Together, our findings indicate that obesity targets astrocytes to disrupt the delicate balance between excitatory and inhibitory transmission in the OFC. HO_SCPLOWIGHLIGHTSC_SCPLOWO_LIDiet-induced obesity induces hypertrophy of astrocytes and impairs their ability to transport glutamate. C_LIO_LIFailure of astrocytes to clear extrasynaptic glutamate drives endocannabinoid-mediated inhibitory long-term depression of principal output neurons in the OFC. C_LIO_LIAstrocytic glutamate transporter function is restored with NAC, which rescues the synaptic deficits. C_LI
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Lau, B. K., Murphy-Royal, C., Kaur, M., Qiao, M., Gordon, G. R., Bains, J. S., Borgland, S. L.. 2020-05-03. Obesity-induced astrocyte dysregulation of heterosynaptic plasticity within the orbitofrontal cortex. https://doi.org/10.1101/2020.05.01.073205
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