Related Experiment Video
Updated: Aug 29, 2026

Optogenetic Manipulation of Neuronal Activity to Modulate Behavior in Freely Moving Mice
Published on: October 27, 2020
Vagal subcircuits differentially regulate sepsis-induced sickness and anxiety-related behaviors
Lena Bourhy1, Carine Moigneu2, Alice Dupin3
1Institut Pasteur, Université Paris Cité, CNRS UMR 3571, Perception and Action Unit, Paris, France; Université Paris Cité, Collège doctoral BioSciences Paris Cité, Paris, France.
Abstract:
The brain monitors peripheral immune activity via vagus nerve sensory neurons, whose cell bodies lie in the nodose ganglia and project to the brainstem dorsal vagal complex. This relay activates neural circuits mediating infection-related behavioral changes, such as sickness behavior. In severe inflammation like sepsis, this signaling can contribute to brain dysfunction, including persistent anxiety. Using the rodent sepsis model of cecal ligation and puncture, we investigated how vagal subcircuits contribute to these effects, by integrating surgical and chemogenetic gain- and loss-of-function approaches. Activating dorsal vagal complex neurons exacerbated sickness behavior and promoted lasting anxiety-related behavior, while activating upstream nodose neurons did not. Nodose or brainstem transient inhibition had no effect. However, subdiaphragmatic vagotomy reduced acute brain activation and partly attenuated anxiety symptoms in sepsis survivors. These results highlight the complex vagal-immune-brain interplay and emphasize the importance of mechanistic insights to guide the development of targeted therapies.

