Relationship between mild traumatic brain injury and the gut microbiome: A scoping review
- PMID: 34964504
- DOI: 10.1002/jnr.25004
Relationship between mild traumatic brain injury and the gut microbiome: A scoping review
Abstract
There is increasing evidence for the important role of gut microbiota (GMB) in the development and progression of neurologic pathologies. Some studies have shown that modifying the microbiome profile can confer benefits to patients. Mild traumatic brain injury (mTBI) is a common occurrence in the general population. Although most patients recover, in a minority, disabling symptoms can persist for several months. We carried out a review of the literature to assess the effect of mTBI on GMB and to determine whether alleviating dysbiosis can improve clinical outcomes in mTBI patients. We performed searches in Medline/PubMed and Embase using the keywords "MTBI" AND "microbiome" OR "microbiota". Additional articles were identified by manual searches and using the Google search engine. In animal models, a clear perturbation of GMB was reported following TBI and probiotic supplementation (Lactobacillus acidophilus or Clostridium butyricum) improved neurologic function. There were no studies on changes in GMB after mTBI in humans; however, pre- or probiotic supplementation reduced the infection rate in patients with severe TBI and shortened the time spent in the intensive care unit without conferring any neurologic benefits. Thus, although the findings from animal models are promising, clinical studies are needed to determine whether therapeutic strategies that restore gut microbiome profile can improve long-term outcomes of patients with mTBI.
Keywords: gut microbiome; gut microbiota; mild traumatic brain injury; traumatic brain injury.
© 2021 Wiley Periodicals LLC.
References
REFERENCES
-
- Angoa-Pérez, M., Zagorac, B., Anneken, J. H., Briggs, D. I., Winters, A. D., Greenberg, J. M., Ahmad, M., Theis, K. R., & Kuhn, D. M. (2020). Repetitive, mild traumatic brain injury results in a progressive white matter pathology, cognitive deterioration, and a transient gut microbiota dysbiosis. Scientific Reports, 10(1), 8949. https://doi.org/10.1038/s41598-020-65972-4
-
- Ariza, A. C., Deen, P. M. T., & Robben, J. H. (2012). The succinate receptor as a novel therapeutic target for oxidative and metabolic stress-related conditions. Frontiers in Endocrinology, 3, 22. https://doi.org/10.3389/fendo.2012.00022
-
- Arpaia, N., Campbell, C., Fan, X., Dikiy, S., van der Veeken, J., deRoos, P., Liu, H., Cross, J. R., Pfeffer, K., Coffer, P. J., & Rudensky, A. Y. (2013). Metabolites produced by commensal bacteria promote peripheral regulatory T-cell generation. Nature, 504(7480), 451-455. https://doi.org/10.1038/nature12726
-
- Artis, D. (2008). Epithelial-cell recognition of commensal bacteria and maintenance of immune homeostasis in the gut. Nature Reviews Immunology, 8(6), 411-420. https://doi.org/10.1038/nri2316
-
- Baguley, I. J., Heriseanu, R. E., Cameron, I. D., Nott, M. T., & Slewa-Younan, S. (2008). A critical review of the pathophysiology of dysautonomia following traumatic brain injury. Neurocritical Care, 8(2), 293-300. https://doi.org/10.1007/s12028-007-9021-3
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