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Rebuilding Microbiome for Mitigating Traumatic Brain Injury: Importance of Restructuring the Gut-Microbiome-Brain Axis

Akash K. George, Jyotirmaya Behera, Rubens P. Homme, Neetu Tyagi, Suresh C. Tyagi, Mahavir Singh

2021Molecular Neurobiology44 citationsDOIOpen Access PDF

Abstract

Traumatic brain injury (TBI) is a damage to the brain from an external force that results in temporary or permanent impairment in brain functions. Unfortunately, not many treatment options are available to TBI patients. Therefore, knowledge of the complex interplay between gut microbiome (GM) and brain health may shed novel insights as it is a rapidly expanding field of research around the world. Recent studies show that GM plays important roles in shaping neurogenerative processes such as blood-brain-barrier (BBB), myelination, neurogenesis, and microglial maturation. In addition, GM is also known to modulate many aspects of neurological behavior and cognition; however, not much is known about the role of GM in brain injuries. Since GM has been shown to improve cellular and molecular functions via mitigating TBI-induced pathologies such as BBB permeability, neuroinflammation, astroglia activation, and mitochondrial dysfunction, herein we discuss how a dysbiotic gut environment, which in fact, contributes to central nervous system (CNS) disorders during brain injury and how to potentially ward off these harmful effects. We further opine that a better understanding of GM-brain (GMB) axis could help assist in designing better treatment and management strategies in future for the patients who are faced with limited options.

Topics & Concepts

NeuroinflammationTraumatic brain injuryNeuroscienceMicrobiomeGut–brain axisCentral nervous systemBrain damageNeurogenesisBlood–brain barrierMedicinePsychologyBiologyBioinformaticsDiseasePathologyPsychiatryGut microbiota and healthClostridium difficile and Clostridium perfringens researchDiet and metabolism studies
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