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March 31, 2026Comprehensive physiology4 citationsOpen Access

The Brain‐Gut Axis in Parkinson's Disease Pathology

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KOKudret Selin OzkayaKBKirsteen N. Browning

Key Points

  • This review examines how Parkinson's disease progresses through the brain-gut axis, emphasizing the roles of oxidative stress and glial activation in neuronal loss.
  • Review of existing literature on Parkinson's disease and the brain-gut axis.
  • Analysis of the contributions of environmental factors, such as pesticides and heavy metals, to disease pathology.
  • Discussion of the physiological mechanisms, including vagus nerve function and GI tract interactions.
  • Examination of pathological markers like α-synuclein and Lewy Bodies.
  • Evidence indicates that gastrointestinal dysfunction may trigger neurodegenerative processes via the vagus nerve.
  • Oxidative stress and glial activation can begin in the enteric nervous system before neurodegeneration.
  • The early changes in the enteric nervous system are linked to a retrograde spread of pathology to the brain.

Abstract

ABSTRACT Parkinson's disease, characterized by the motor deficits that result from the loss of dopaminergic neurons in the Substantia Nigra pars compacta, is the second most common neurodegenerative disorder worldwide. Parkinson's disease is also commonly associated with severe non‐motor symptoms, including hyposmia and sleep disorders, as well as gastrointestinal dysfunction and dysregulation of the brain‐gut axis. Increasing evidence indicates that pathology in the “body‐first” subtype of Parkinson's disease may originate in the gastrointestinal (GI) tract and then spread to the brain via the vagus nerve. GI dysfunction may also arise, however, from “top‐down” or “brain‐first” mechanisms, reflecting bidirectional brain‐gut interactions. Systemic environmental factors, such as exposure to pesticides and heavy metals, are hypothesized to initiate this pathology and promote α‐synuclein (α‐syn) misfolding and the formation of Lewy Bodies. A growing body of evidence suggests, however, that oxidative stress and glial activation may emerge in the enteric nervous system and the dorsal motor nucleus of the vagus long before the onset of neurodegeneration, and that these early changes may be sufficient to drive the retrograde spread of pathology to higher brain regions. The purpose of this review is to discuss the progression of PD pathology across the brain‐gut axis, providing insights into the contribution of oxidative stress and glial activation to neuronal loss, and highlighting the importance of these mechanisms for potential therapeutic intervention at the earliest stages of PD.

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Cite This Study

Ozkaya et al. (2026) studied this question.

synapsesocial.com/papers/69cb6526e6a8c024954b937ahttps://doi.org/10.1002/cph4.70137
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1IMPORTANCE OF THE GUT–BRAIN AXIS AS A NOVEL THERAPEUTIC TARGET IN THE MANAGEMENT AND TREATMENT OF PARKINSON'S DISEASE2026
  2. 2The Gut-Brain Connection: Exploring the Connection Between the Gastrointestinal System and Parkinson's Disease2026
  3. 3The role of gut microbiota in the pathogenesis of Parkinson’s disease: mechanisms of influence and therapeutic perspectives (review)2025
  4. 4Gut–Brain Signaling in Parkinson’s Disease: A Narrative Review2026
  5. 5Parkinson’s disease beyond the brain: implications for treatments2025