Enteric Nervous System: The Bridge Between the Gut Microbiota and Neurological Disorders

Front Aging Neurosci. 2022 Apr 19:14:810483. doi: 10.3389/fnagi.2022.810483. eCollection 2022.

Abstract

The gastrointestinal (GI) tract plays an essential role in food digestion, absorption, and the mucosal immune system; it is also inhabited by a huge range of microbes. The GI tract is densely innervated by a network of 200-600 million neurons that comprise the enteric nervous system (ENS). This system cooperates with intestinal microbes, the intestinal immune system, and endocrine systems; it forms a complex network that is required to maintain a stable intestinal microenvironment. Understanding how gut microbes influence the ENS and central nervous system (CNS) has been a significant research subject over the past decade. Moreover, accumulating evidence from animal and clinical studies has revealed that gut microbiota play important roles in various neurological diseases. However, the causal relationship between microbial changes and neurological disorders currently remains unproven. This review aims to summarize the possible contributions of GI microbiota to the ENS and CNS. It also provides new insights into furthering our current understanding of neurological disorders.

Keywords: central nervous system; enteric nervous system; gastrointestinal microbiota; microbiota-gut-brain axis; neurological disorders.

Publication types

  • Review