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Article Publish Status: FREE
Abstract Title:

Inhibition of acute lung inflammation by a neuroimmune circuit induced by vagal nerve stimulation.

Abstract Source:

Sci Adv. 2025 Jun 6 ;11(23):eadw7080. Epub 2025 Jun 4. PMID: 40465722

Abstract Author(s):

Kaitlin Murray, Michael Cremin, Emmy Tay, Kristina Sanchez, Sierra Schreiber, Elliot Lloyd, Ingrid Brust-Mascher, Wesley Leigh, Jannat Ashfaq, Melanie G Gareau, Colin Reardon

Article Affiliation:

Kaitlin Murray

Abstract:

Vagus nerve stimulation (VNS) has been shown to limit immune cell activity across several pathologies ranging from sepsis to auto-immune diseases. While stimulation of vagal efferent neurons is known to reduce maladaptive host responses during endotoxemia, only selective vagal afferent neuron stimulation inhibited TLR7-induced macrophage activation and neutrophil recruitment to the lung. These anti-inflammatory actions are dependent on adrenal gland-derived epinephrine, as adrenalectomy or inhibition of epinephrine production eliminated the protection afforded by VNS. Selective afferent VNS induced activation in the nucleus tractus solitarius and the rostral ventrolateral medulla. Inhibition of neuronal activity in this brain region that controls peripheral sympathetic nervous system activity rendered VNS ineffective. Activation of theβ-adrenergic receptor (βAR) is critical for innate immune cell suppression, as the anti-inflammatory effects of VNS were eliminated inβAR knockout mice and with pharmacological inhibition of theβAR. These findings demonstrate a previously unidentified neuroimmune circuit elicited by VNS that can control acute lung inflammation.

Study Type : Animal Study

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