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May 12, 2026Medicine India0 citationsOpen Access

Unlocking the microbiome: The gut–brain axis in neurological disorders

JAJyoti Aggarwal

Key Points

  • This research investigates how the gut microbiome influences neurological functions and disorders through the gut-brain axis.
  • Review of literature from 2020 to 2026 on gut microbiome and neurological disorders.
  • Analysis of microbiome effects on brain function, behavior, and disease susceptibility.
  • Exploration of mechanistic pathways involving neural, immunological, endocrine, and metabolic factors.
  • Perturbations in microbial homeostasis correlate with increased vulnerability to Parkinson's disease, Alzheimer's disease, and multiple sclerosis.
  • Microbial-derived metabolites play significant roles in neuromodulation and brain health.

Abstract

In contemporary biomedical research, the gut microbiome has emerged as a pivotal determinant of neurological integrity, profoundly redefining our understanding of brain-body interplay.The gut-brain axis, an intricate and bidirectional communication network linking the gastrointestinal milieu with the central nervous system, operates through an elaborate convergence of neural, immunological, endocrine, and metabolic pathways.This dynamic interface enables gut-resident microorganisms to modulate brain function, behavior, and disease susceptibility.A growing body of evidence from 2020 to 2026 underscores that perturbations in microbial homeostasis are intricately associated with neurological disorders, including Parkinson's disease (PD), Alzheimer's disease (AD), and multiple sclerosis (MS). MECHANISTIC UNDERPINNINGS OF THE GUT-BRAIN AXISRecent advances have elucidated several mechanistic pathways through which the gut microbiome exerts its neuromodulatory effects.Among these, microbial-derived metabolites have garnered particular attention.

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Cite This Study

Jyoti Aggarwal (2026) studied this question.

synapsesocial.com/papers/6a02c2fdce8c8c81e9640464https://doi.org/10.25259/medindia_15_2026
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