Non-invasive ventral cervical magnetoneurography as a proxy of in vivo lipopolysaccharide-induced inflammation

Author:

Bu Yifeng,Burks Jamison,Yang Kun,Prince Jacob,Borna Amir,Coe Christopher L.ORCID,Simmons Alan,Tu Xin M.,Baker Dewleen,Kimball Donald,Rao Ramesh,Shah Vishal,Huang Mingxiong,Schwindt PeterORCID,Coleman Todd P.,Lerman ImanuelORCID

Abstract

AbstractMaintenance of autonomic homeostasis is continuously calibrated by sensory fibers of the vagus nerve and sympathetic chain that convey compound action potentials (CAPs) to the central nervous system. Lipopolysaccharide (LPS) intravenous challenge reliably elicits a robust inflammatory response that can resemble systemic inflammation and acute endotoxemia. Here, we administered LPS intravenously in nine healthy subjects while recording ventral cervical magnetoneurography (vcMNG)-derived CAPs at the rostral Right Nodose Ganglion (RNG) and the caudal Right Carotid Artery (RCA) with optically pumped magnetometers (OPM). We observed vcMNG RNG and RCA neural firing rates that tracked changes in TNF-α levels in the systemic circulation. Further, endotype subgroups based on high and low IL-6 responders segregate RNG CAP frequency (at 30-120 min) and based on high and low IL-10 response discriminate RCA CAP frequency (at 0-30 min). These vcMNG tools may enhance understanding and management of the neuroimmune axis that can guide personalized treatment based on an individual’s distinct endophenotype.

Funder

Further funding was provided by the David and Janice Katz Neural Sensor Research Fund in Memory of Allen E. Wolf.

Publisher

Springer Science and Business Media LLC

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