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- W4366335819 endingPage "22.2023" @default.
- W4366335819 startingPage "ENEURO.0412" @default.
- W4366335819 abstract "Abstract The parabrachial complex (PB) is critically involved in aversive processes, and chronic pain is associated with amplified activity of PB neurons in rodent models of neuropathic pain. Here, we demonstrate that catecholaminergic input from the caudal nucleus of the solitary tract (cNTS cat ), a stress responsive region that integrates interoceptive and exteroceptive signals, causes amplification of PB activity and their sensory afferents. We used a virally mediated expression of a norepinephrine (NE) sensor, NE2h, fiber photometry, and extracellular recordings in anesthetized mice to show that noxious mechanical and thermal stimuli activate cNTS neurons. These stimuli also produce prolonged NE transients in PB that far outlast the noxious stimuli. Similar NE transients can be evoked by focal electrical stimulation of cNTS, a region that contains the noradrenergic A2 cell group that projects densely on PB. In vitro , optical stimulation of cNTS cat terminals depolarized PB neurons and caused a prolonged increase the frequency of excitatory synaptic activity. A dual opsin approach showed that sensory afferents from the caudal spinal trigeminal nucleus are potentiated by cNTS cat terminal activation. This potentiation was coupled with a decrease in the paired pulse ratio (PPR), consistent with an cNTS cat -mediated increase in the probability of release at SpVc synapses. Together, these data suggest that A2 neurons of the cNTS generate long lasting NE transients in PB which increase excitability and potentiate responses of PB neurons to sensory inputs. These reveal a mechanism through which stressors from multiple modalities may potentiate the aversiveness of nociceptive stimuli." @default.
- W4366335819 created "2023-04-20" @default.
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- W4366335819 date "2023-04-18" @default.
- W4366335819 modified "2023-10-14" @default.
- W4366335819 title "Noradrenergic input from nucleus of the solitary tract regulates parabrachial activity in mice" @default.
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- W4366335819 doi "https://doi.org/10.1523/eneuro.0412-22.2023" @default.
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