The bidirectional gut-brain-microbiota axis as a potential nexus between traumatic brain injury, inflammation, and disease
As head injuries and their sequelae have become an increasingly salient matter of public health, experts in the field have made great progress elucidating the biological processes occurring within the brain at the moment of injury and throughout the recovery thereafter. Given the extraordinary rate...
Main Authors: | , , , |
---|---|
Other Authors: | |
Language: | en |
Published: |
ACADEMIC PRESS INC ELSEVIER SCIENCE
2017
|
Subjects: | |
Online Access: | http://hdl.handle.net/10150/626124 http://arizona.openrepository.com/arizona/handle/10150/626124 |
id |
ndltd-arizona.edu-oai-arizona.openrepository.com-10150-626124 |
---|---|
record_format |
oai_dc |
spelling |
ndltd-arizona.edu-oai-arizona.openrepository.com-10150-6261242017-11-24T03:00:26Z The bidirectional gut-brain-microbiota axis as a potential nexus between traumatic brain injury, inflammation, and disease Sundman, Mark H. Chen, Nan-kuei Subbian, Vignesh Chou, Ying-hui Department of Psychology, University of Arizona, Tucson, AZ, USA Gut-brain axis Traumatic Brain Injury Concussion Gut Microbiota Chronic Traumatic Encephalopathy Neurodegenerative disease Neuroinflammation Microglia Intestinal dysfunction As head injuries and their sequelae have become an increasingly salient matter of public health, experts in the field have made great progress elucidating the biological processes occurring within the brain at the moment of injury and throughout the recovery thereafter. Given the extraordinary rate at which our collective knowledge of neurotrauma has grown, new insights may be revealed by examining the existing literature across disciplines with a new perspective. This article will aim to expand the scope of this rapidly evolving field of research beyond the confines of the central nervous system (CNS). Specifically, we will examine the extent to which the bidirectional influence of the gut-brain axis modulates the complex biological processes occurring at the time of traumatic brain injury (TBI) and over the days, months, and years that follow. In addition to local enteric signals originating in the gut, it is well accepted that gastrointestinal (GI) physiology is highly regulated by innervation from the CNS. Conversely, emerging data suggests that the function and health of the CNS is modulated by the interaction between 1) neurotransmitters, immune signaling, hormones, and neuropeptides produced in the gut, 2) the composition of the gut microbiota, and 3) integrity of the intestinal wall serving as a barrier to the external environment. Specific to TBI, existing pre-clinical data indicates that head injuries can cause structural and functional damage to the GI tract, but research directly investigating the neuronal consequences of this intestinal damage is lacking. Despite this void, the proposed mechanisms emanating from a damaged gut are closely implicated in the inflammatory processes known to promote neuropathology in the brain following TBI, which suggests the gut-brain axis may be a therapeutic target to reduce the risk of Chronic Traumatic Encephalopathy and other neurodegenerative diseases following TBI. To better appreciate how various peripheral influences are implicated in the health of the CNS following TBI, this paper will also review the secondary biological injury mechanisms and the dynamic pathophysiological response to neurotrauma. Together, this review article will attempt to connect the dots to reveal novel insights into the bidirectional influence of the gut-brain axis and propose a conceptual model relevant to the recovery from TBI and subsequent risk for future neurological conditions. 2017-11 Article The bidirectional gut-brain-microbiota axis as a potential nexus between traumatic brain injury, inflammation, and disease 2017, 66:31 Brain, Behavior, and Immunity 08891591 10.1016/j.bbi.2017.05.009 http://hdl.handle.net/10150/626124 http://arizona.openrepository.com/arizona/handle/10150/626124 Brain, Behavior, and Immunity en http://linkinghub.elsevier.com/retrieve/pii/S0889159117301551 © 2017 Elsevier Inc. All rights reserved. ACADEMIC PRESS INC ELSEVIER SCIENCE |
collection |
NDLTD |
language |
en |
sources |
NDLTD |
topic |
Gut-brain axis Traumatic Brain Injury Concussion Gut Microbiota Chronic Traumatic Encephalopathy Neurodegenerative disease Neuroinflammation Microglia Intestinal dysfunction |
spellingShingle |
Gut-brain axis Traumatic Brain Injury Concussion Gut Microbiota Chronic Traumatic Encephalopathy Neurodegenerative disease Neuroinflammation Microglia Intestinal dysfunction Sundman, Mark H. Chen, Nan-kuei Subbian, Vignesh Chou, Ying-hui The bidirectional gut-brain-microbiota axis as a potential nexus between traumatic brain injury, inflammation, and disease |
description |
As head injuries and their sequelae have become an increasingly salient matter of public health, experts in the field have made great progress elucidating the biological processes occurring within the brain at the moment of injury and throughout the recovery thereafter. Given the extraordinary rate at which our collective knowledge of neurotrauma has grown, new insights may be revealed by examining the existing literature across disciplines with a new perspective. This article will aim to expand the scope of this rapidly evolving field of research beyond the confines of the central nervous system (CNS). Specifically, we will examine the extent to which the bidirectional influence of the gut-brain axis modulates the complex biological processes occurring at the time of traumatic brain injury (TBI) and over the days, months, and years that follow. In addition to local enteric signals originating in the gut, it is well accepted that gastrointestinal (GI) physiology is highly regulated by innervation from the CNS. Conversely, emerging data suggests that the function and health of the CNS is modulated by the interaction between 1) neurotransmitters, immune signaling, hormones, and neuropeptides produced in the gut, 2) the composition of the gut microbiota, and 3) integrity of the intestinal wall serving as a barrier to the external environment. Specific to TBI, existing pre-clinical data indicates that head injuries can cause structural and functional damage to the GI tract, but research directly investigating the neuronal consequences of this intestinal damage is lacking. Despite this void, the proposed mechanisms emanating from a damaged gut are closely implicated in the inflammatory processes known to promote neuropathology in the brain following TBI, which suggests the gut-brain axis may be a therapeutic target to reduce the risk of Chronic Traumatic Encephalopathy and other neurodegenerative diseases following TBI. To better appreciate how various peripheral influences are implicated in the health of the CNS following TBI, this paper will also review the secondary biological injury mechanisms and the dynamic pathophysiological response to neurotrauma. Together, this review article will attempt to connect the dots to reveal novel insights into the bidirectional influence of the gut-brain axis and propose a conceptual model relevant to the recovery from TBI and subsequent risk for future neurological conditions. |
author2 |
Department of Psychology, University of Arizona, Tucson, AZ, USA |
author_facet |
Department of Psychology, University of Arizona, Tucson, AZ, USA Sundman, Mark H. Chen, Nan-kuei Subbian, Vignesh Chou, Ying-hui |
author |
Sundman, Mark H. Chen, Nan-kuei Subbian, Vignesh Chou, Ying-hui |
author_sort |
Sundman, Mark H. |
title |
The bidirectional gut-brain-microbiota axis as a potential nexus between traumatic brain injury, inflammation, and disease |
title_short |
The bidirectional gut-brain-microbiota axis as a potential nexus between traumatic brain injury, inflammation, and disease |
title_full |
The bidirectional gut-brain-microbiota axis as a potential nexus between traumatic brain injury, inflammation, and disease |
title_fullStr |
The bidirectional gut-brain-microbiota axis as a potential nexus between traumatic brain injury, inflammation, and disease |
title_full_unstemmed |
The bidirectional gut-brain-microbiota axis as a potential nexus between traumatic brain injury, inflammation, and disease |
title_sort |
bidirectional gut-brain-microbiota axis as a potential nexus between traumatic brain injury, inflammation, and disease |
publisher |
ACADEMIC PRESS INC ELSEVIER SCIENCE |
publishDate |
2017 |
url |
http://hdl.handle.net/10150/626124 http://arizona.openrepository.com/arizona/handle/10150/626124 |
work_keys_str_mv |
AT sundmanmarkh thebidirectionalgutbrainmicrobiotaaxisasapotentialnexusbetweentraumaticbraininjuryinflammationanddisease AT chennankuei thebidirectionalgutbrainmicrobiotaaxisasapotentialnexusbetweentraumaticbraininjuryinflammationanddisease AT subbianvignesh thebidirectionalgutbrainmicrobiotaaxisasapotentialnexusbetweentraumaticbraininjuryinflammationanddisease AT chouyinghui thebidirectionalgutbrainmicrobiotaaxisasapotentialnexusbetweentraumaticbraininjuryinflammationanddisease AT sundmanmarkh bidirectionalgutbrainmicrobiotaaxisasapotentialnexusbetweentraumaticbraininjuryinflammationanddisease AT chennankuei bidirectionalgutbrainmicrobiotaaxisasapotentialnexusbetweentraumaticbraininjuryinflammationanddisease AT subbianvignesh bidirectionalgutbrainmicrobiotaaxisasapotentialnexusbetweentraumaticbraininjuryinflammationanddisease AT chouyinghui bidirectionalgutbrainmicrobiotaaxisasapotentialnexusbetweentraumaticbraininjuryinflammationanddisease |
_version_ |
1718562731588583424 |