4.7 Article

Gut microbiome effects on neuronal excitability & activity: Implications for epilepsy

期刊

NEUROBIOLOGY OF DISEASE
卷 165, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.nbd.2022.105629

关键词

Epilepsy; Microbiome; Excitability; Microbiota-gut-brain axis; Microbiota; Seizure; Paroxysm; Oscillation; Neuronal activity

资金

  1. APEX postdoctoral fellowship (Marie Curie COFUND programme) [754535]
  2. Science Foundation Ireland (SFI) through the Irish Government's National Development Plan [SF1/12/RC/2273 P2]

向作者/读者索取更多资源

The gut microbiome has been found to have an influence on the excitability and activity of neurons, which is particularly significant in the context of epilepsy. Further research is needed to understand the mechanisms of this influence.
It is now well established that the bacterial population of the gastrointestinal system, known as the gut micro-biome, is capable of influencing the brain and its dependent functions. Links have been demonstrated between the microbiome and a variety of normal and pathological neural functions, including epilepsy. Many of these microbiome-brain links involve the direct or indirect modulation of the excitability and activity of individual neurons by the gut microbiome. Such links may be particularly significant when it comes to microbiome mod-ulation of epilepsy, often considered a disorder of neuronal excitability. In this review we consider the current evidence of a relationship between the gut microbiome and the excitability or activity of neurons in the context of epilepsy. The review focuses particularly on evidence of direct, causal microbiome effects on neuronal excitability or activity, but also considers demonstrations of microbiome to host interactions that are likely to have an indirect influence. While we identify a few common themes, it is apparent that deriving general mechanistic principles of microbiome influence on these parameters in epilepsy will require considerable further study to tease out the many interacting factors, systems, and conditions.

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