| Literature DB >> 33212012 |
Bin Zhang1, Liyao Qiu1, Wei Xiao1, Hong Ni2, Lunhao Chen1, Fan Wang1, Weihao Mai1, Jintao Wu1, Aimin Bao1, Hailan Hu3, Hui Gong4, Shumin Duan1, Anan Li5, Zhihua Gao6.
Abstract
The hypothalamo-neurohypophysial system (HNS), comprising hypothalamic magnocellular neuroendocrine cells (MNCs) and the neurohypophysis, plays a pivotal role in regulating reproduction and fluid homeostasis by releasing oxytocin and vasopressin into the bloodstream. However, its structure and contribution to the central actions of oxytocin and vasopressin remain incompletely understood. Using viral tracing and whole-brain imaging, we reconstruct the three-dimensional architecture of the HNS and observe collaterals of MNCs within the brain. By dual viral tracing, we further uncover that subsets of MNCs collaterally project to multiple extrahypothalamic regions. Selective activation of magnocellular oxytocin neurons promote peripheral oxytocin release and facilitate central oxytocin-mediated social interactions, whereas inhibition of these neurons elicit opposing effects. Our work reveals the previously unrecognized complexity of the HNS and provides structural and functional evidence for MNCs in coordinating both peripheral and central oxytocin-mediated actions, which will shed light on the mechanistic understanding of oxytocin-related psychiatric diseases.Entities:
Keywords: collaterals; hypothalamo-neurohypophysial system; magnocellular neuroendocrine cell; oxytocin; reconstruction; social interaction; whole-brain imaging
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Year: 2020 PMID: 33212012 DOI: 10.1016/j.neuron.2020.10.032
Source DB: PubMed Journal: Neuron ISSN: 0896-6273 Impact factor: 17.173