Proceedings of the National Academy of Sciences · 2010 · 335 citations · 12 references
Affective NeuroscienceGlutamatergic TransmissionGlucocorticoidGlucocorticoid ReceptorSocial SciencesStressNeuroendocrine MechanismNeurochemistryPsychoneuroimmunologyStress HormonePsychiatryStress Hormone CorticosteroneNeuropharmacologyNervous SystemEndocrinologyHippocampal Glutamatergic TransmissionNeurobiological MechanismNeurophysiologyPhysiologyNeuroscienceMedicinePost-traumatic Stress Disorder
High levels of corticosteroids (as circulate after stress) quickly and reversibly enhance hippocampal glutamatergic transmission via nongenomic actions requiring mineralocorticoid receptors. Subsequently, the hormone slowly and long-lastingly normalizes hippocampal cell function, through nuclear glucocorticoid receptors. Here we describe a rapid mineralocorticoid receptor-dependent enhancement of glutamatergic transmission in basolateral amygdala neurons. Contrary to the hippocampus, this rapid enhancement is long-lasting, potentially allowing an extended window for encoding of emotional aspects during stressful events. Importantly, the long-lasting change in state of amygdala neurons greatly affects the responsiveness to subsequent surges of corticosterone, revealing a quick suppression of glutamatergic transmission, which requires the glucocorticoid receptor. Responses of basolateral amygdala neurons to the stress hormone corticosterone can thus switch from excitatory to inhibitory, depending on the recent stress history of the organism.
12
Henk Karst, Stefan Berger, Marc Turiault et al. · Proceedings of the National Academy of Sciences · 2005 · 762 citations · Full text
Synaptic Transmission, Neurotransmitter, Adrenal Hormone Corticosterone +21
Patrizia Campolongo, Benno Roozendaal, Viviana Trezza et al. · Proceedings of the National Academy of Sciences · 2009 · 292 citations · Full text
Neuropsychology, Neurotransmitter, Affective Neuroscience +20