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In addition to producing a classical excitatory postsynaptic current via activation of synaptic NMDA receptors (NMDARs), glutamate in the brain also induces a tonic NMDAR receptor current (INMDA) via activation of extrasynaptic NMDARs (eNMDARs). However, since Mg2+ blocks NMDARs in non-depolarized neurons, the potential contribution of eNMDARs to the overall neuronal excitation/inhibition balance remains unknown. Here, we demonstrate that chronic (7-day) salt loading (SL) recruited NR2D subunit-containing NMDARs to generate an Mg2+-resistant tonic INMDA in non-depolarized (Vh, -70 mV) vasopressin (VP) (but not oxytocin (OT)) supraoptic nucleus (SON) neurons in male rodents. Conversely, in euhydrated and 3-day SL mice, Mg2+-resistant tonic INMDA was not observed. Pharmacological and genetic intervention of NR2D subunits blocked the Mg2+-resistant tonic INMDA in VP neurons under SL conditions, while an NR2B antagonist unveiled Mg2+-sensitive tonic INMDA but not Mg2+-resistant tonic INMDA. In the EU-group VP ...Dec 10, 2020