Bed Nucleus of Stria Terminalis Enkephalin Neurons Contribute to Depletion-Induced Salt Appetite
Abstract
The overconsumption of sodium contributes to a wide range of detrimental health conditions. Thus, it is imperative to gain a better understanding of the neural mechanisms driving sodium appetite. Here, we combined neuroanatomic, transgenic, behavioral, and chemogenetic approaches to investigate the role of bed nucleus of stria terminalis (BNST) enkephalin neurons (BNST ENK ) in sodium appetite in male and female pENK-Cre mice. Our results demonstrate that G i -mediated signaling onto BNST ENK neurons regulates salt consumption following sodium depletion but does not impact upon taste preference when replete. Further, G i -mediated signaling onto BNST ENK neurons had no effect on deprivation-induced food or water intake or anxiety-like behavior. Using Cre-dependent retrograde trans-synaptic tracing and anterograde AAV tracing, we show connectivity between BNST ENK neurons with the extended amygdala, thalamus, and hypothalamus. In summary, we have identified that BNST ENK neurons are integral to a needs-based salt appetite and demonstrate the broader connectivity of these neurons providing a roadmap for future circuit interventions.
Article Details
Authors (11)
Roberta Goncalves Anversa
Kathleen S.-L. Teng
Aida Viden
Sarah S. Ch’ng
Brandon K. Richards
Tobian Catsburg
Amy J. Pearl
Leigh C. Walker
Christina J. Perry
Craig M. Smith
Andrew J. Lawrence