Microglia dynamics in adolescent traumatic brain injury
Abstract Repetitive, mild traumatic brain injuries (RmTBIs) are increasingly common in adolescents and encompass one of the largest neurological health concerns in the world. Adolescence is a critical period for brain development where RmTBIs can substantially impact neurodevelopmental trajectories...
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doaj-c5644766553a481794af7c2915a10dc32020-11-25T03:58:15ZengBMCJournal of Neuroinflammation1742-20942020-10-0117111910.1186/s12974-020-01994-zMicroglia dynamics in adolescent traumatic brain injuryEric Eyolfson0Asher Khan1Richelle Mychasiuk2Alexander W. Lohman3Department of Psychology, University of CalgaryHotchkiss Brain Institute, University of CalgaryDepartment of Psychology, University of CalgaryHotchkiss Brain Institute, University of CalgaryAbstract Repetitive, mild traumatic brain injuries (RmTBIs) are increasingly common in adolescents and encompass one of the largest neurological health concerns in the world. Adolescence is a critical period for brain development where RmTBIs can substantially impact neurodevelopmental trajectories and life-long neurological health. Our current understanding of RmTBI pathophysiology suggests key roles for neuroinflammation in negatively regulating neural health and function. Microglia, the brain’s resident immune population, play important roles in brain development by regulating neuronal number, and synapse formation and elimination. In response to injury, microglia activate to inflammatory phenotypes that may detract from these normal homeostatic, physiological, and developmental roles. To date, however, little is known regarding the impact of RmTBIs on microglia function during adolescent brain development. This review details key concepts surrounding RmTBI pathophysiology, adolescent brain development, and microglia dynamics in the developing brain and in response to injury, in an effort to formulate a hypothesis on how the intersection of these processes may modify long-term trajectories.http://link.springer.com/article/10.1186/s12974-020-01994-zSynaptic pruningGliaPathophysiologyWhite matterBrain maturationComplement cascade |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Eric Eyolfson Asher Khan Richelle Mychasiuk Alexander W. Lohman |
spellingShingle |
Eric Eyolfson Asher Khan Richelle Mychasiuk Alexander W. Lohman Microglia dynamics in adolescent traumatic brain injury Journal of Neuroinflammation Synaptic pruning Glia Pathophysiology White matter Brain maturation Complement cascade |
author_facet |
Eric Eyolfson Asher Khan Richelle Mychasiuk Alexander W. Lohman |
author_sort |
Eric Eyolfson |
title |
Microglia dynamics in adolescent traumatic brain injury |
title_short |
Microglia dynamics in adolescent traumatic brain injury |
title_full |
Microglia dynamics in adolescent traumatic brain injury |
title_fullStr |
Microglia dynamics in adolescent traumatic brain injury |
title_full_unstemmed |
Microglia dynamics in adolescent traumatic brain injury |
title_sort |
microglia dynamics in adolescent traumatic brain injury |
publisher |
BMC |
series |
Journal of Neuroinflammation |
issn |
1742-2094 |
publishDate |
2020-10-01 |
description |
Abstract Repetitive, mild traumatic brain injuries (RmTBIs) are increasingly common in adolescents and encompass one of the largest neurological health concerns in the world. Adolescence is a critical period for brain development where RmTBIs can substantially impact neurodevelopmental trajectories and life-long neurological health. Our current understanding of RmTBI pathophysiology suggests key roles for neuroinflammation in negatively regulating neural health and function. Microglia, the brain’s resident immune population, play important roles in brain development by regulating neuronal number, and synapse formation and elimination. In response to injury, microglia activate to inflammatory phenotypes that may detract from these normal homeostatic, physiological, and developmental roles. To date, however, little is known regarding the impact of RmTBIs on microglia function during adolescent brain development. This review details key concepts surrounding RmTBI pathophysiology, adolescent brain development, and microglia dynamics in the developing brain and in response to injury, in an effort to formulate a hypothesis on how the intersection of these processes may modify long-term trajectories. |
topic |
Synaptic pruning Glia Pathophysiology White matter Brain maturation Complement cascade |
url |
http://link.springer.com/article/10.1186/s12974-020-01994-z |
work_keys_str_mv |
AT ericeyolfson microgliadynamicsinadolescenttraumaticbraininjury AT asherkhan microgliadynamicsinadolescenttraumaticbraininjury AT richellemychasiuk microgliadynamicsinadolescenttraumaticbraininjury AT alexanderwlohman microgliadynamicsinadolescenttraumaticbraininjury |
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