Interaction of the Vagus Nerve and Serotonin in the Gut–Brain Axis

Feb 13, 2025International journal of molecular sciences

How the Vagus Nerve and Serotonin Work Together in Gut-Brain Communication

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Abstract

Serotonin (5-HT) synthesized in the gut plays a key role in gut-brain communication.

  • The is a bidirectional communication network involving the vagus nerve.
  • Serotonin, primarily produced by enterochromaffin cells in the gut, activates vagal afferent fibers.
  • Activation of these fibers transmits signals to the nucleus tractus solitarius and modulates neurons in the dorsal raphe nucleus and locus coeruleus.
  • This signaling pathway is associated with emotional regulation, stress responses, and immune modulation.
  • Microbial metabolites, especially , may enhance serotonin synthesis and vagal activity.

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Full Text

What this is

  • The () is a complex communication network between the gut and the central nervous system.
  • Serotonin (5-HT), primarily produced in the gut, plays a crucial role in this interaction, influencing emotional regulation and immune responses.
  • The vagus nerve serves as a key pathway for transmitting gut-derived signals to the brain.
  • This review synthesizes current knowledge on serotonin signaling and its implications for neuropsychiatric and gastrointestinal disorders.

Essence

  • The relies on serotonin signaling via the vagus nerve to influence emotional and physiological responses. Gut-derived serotonin interacts with the central nervous system, modulating stress and immune functions.

Key takeaways

  • Serotonin synthesized in the gut regulates both local intestinal functions and systemic effects. Approximately 90% of the body's serotonin is produced in the gut, predominantly by enterochromaffin cells.
  • () produced by gut microbiota enhance serotonin synthesis by upregulating tryptophan hydroxylase 1 (TPH1). This interaction underscores the microbiota's role in gut-brain communication.
  • The vagus nerve transmits signals from gut-derived serotonin to the nucleus tractus solitarius (NTS) in the brain, influencing mood and stress responses. This pathway highlights potential therapeutic targets for neuropsychiatric disorders.

Caveats

  • The complexity of the presents challenges in understanding the precise mechanisms of serotonin-mediated communication. Current therapeutic strategies targeting this axis are still in early stages.
  • Interspecies differences in serotonin receptor expression may limit the applicability of findings across different models. This complicates the translation of preclinical research to clinical settings.

Definitions

  • Gut-brain axis (GBA): A bidirectional communication network integrating signals between the gut and the central nervous system, influencing physical and mental health.
  • Short-chain fatty acids (SCFAs): Metabolites produced by gut bacteria that enhance serotonin synthesis and modulate gut-brain communication.

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