Systematic Review with Qualitative Synthesis of Gut Microbiota Alterations after Acute Brain Injury

Emilie Occhiali1,2, Domitille Renard1, Camille Molkhou1

  • 1Department of Anesthesiology, Critical Care and Perioperative Medicine, University Hospital Centre Rouen, Rouen, France.

Insights

Acute brain injury (ABI) significantly alters the gut microbiota (GM), reducing diversity and changing bacterial composition. These gut microbiome changes are linked to worse patient outcomes and may be influenced by intensive care unit (ICU) therapies.

Area of Science:

  • Microbiology
  • Neurology
  • Critical Care Medicine

Background:

  • Acute brain injury (ABI), whether traumatic or nontraumatic, profoundly impacts the gut microbiota (GM).
  • Understanding this gut-brain axis disruption is crucial for intensive care physicians.
  • Significant heterogeneity in existing studies necessitates a qualitative synthesis approach.

Purpose of the Study:

  • To systematically review and qualitatively synthesize findings on the relationship between ABI and GM.
  • To elucidate the patterns of GM alterations following ABI.
  • To identify potential clinical associations and therapeutic implications.

Main Methods:

  • Systematic review with qualitative synthesis.
  • Thematic synthesis focusing on study types, microbiota metrics, and clinical associations.
  • Exclusion of meta-analysis due to significant heterogeneity in study designs, populations, and outcomes.

Main Results:

  • ABI consistently associates with reduced microbial diversity, decreased beneficial bacteria, and increased variability in GM composition.
  • Specific phyla like Pseudomonadota and Bacteroidota are often enriched, while Bacillota is depleted, irrespective of ABI cause.
  • GM alterations manifest rapidly post-injury, can persist for months, and are linked to metabolic, immune, and neuronal disruptions, potentially exacerbated by ICU interventions.

Conclusions:

  • Gut dysbiosis following ABI is a significant phenomenon linked to adverse clinical outcomes, including delayed recovery and increased mortality.
  • Emerging therapies targeting the GM show promise for post-ABI recovery.
  • Further research is needed to clarify mechanisms, prognostic value, and the impact of ICU therapies on GM dynamics for developing targeted interventions.