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A Neural Circuit Mechanism Controlling Breathing by Leptin in the Nucleus Tractus Solitarii / 神经科学通报·英文版
Neuroscience Bulletin ; (6): 149-165, 2022.
Article in English | WPRIM | ID: wpr-929077
ABSTRACT
Leptin, an adipocyte-derived peptide hormone, has been shown to facilitate breathing. However, the central sites and circuit mechanisms underlying the respiratory effects of leptin remain incompletely understood. The present study aimed to address whether neurons expressing leptin receptor b (LepRb) in the nucleus tractus solitarii (NTS) contribute to respiratory control. Both chemogenetic and optogenetic stimulation of LepRb-expressing NTS (NTSLepRb) neurons notably activated breathing. Moreover, stimulation of NTSLepRb neurons projecting to the lateral parabrachial nucleus (LPBN) not only remarkably increased basal ventilation to a level similar to that of the stimulation of all NTSLepRb neurons, but also activated LPBN neurons projecting to the preBötzinger complex (preBötC). By contrast, ablation of NTSLepRb neurons projecting to the LPBN notably eliminated the enhanced respiratory effect induced by NTSLepRb neuron stimulation. In brainstem slices, bath application of leptin rapidly depolarized the membrane potential, increased the spontaneous firing rate, and accelerated the Ca2+ transients in most NTSLepRb neurons. Therefore, leptin potentiates breathing in the NTS most likely via an NTS-LPBN-preBötC circuit.
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Full text: Available Index: WPRIM (Western Pacific) Main subject: Solitary Nucleus / Leptin / Membrane Potentials / Neurons Language: English Journal: Neuroscience Bulletin Year: 2022 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Main subject: Solitary Nucleus / Leptin / Membrane Potentials / Neurons Language: English Journal: Neuroscience Bulletin Year: 2022 Type: Article