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Published on: September 11, 2017
Cellular Senescence in Traumatic Brain Injury: Evidence and Perspectives
Nicole Schwab1,2, Emily Leung1,2, Lili-Naz Hazrati1,2
1Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, ON, Canada.
Abstract:
Mild traumatic brain injury (mTBI) can lead to long-term neurological dysfunction and increase one's risk of neurodegenerative disease. Several repercussions of mTBI have been identified and well-studied, including neuroinflammation, gliosis, microgliosis, excitotoxicity, and proteinopathy - however the pathophysiological mechanisms activating these pathways after mTBI remains controversial and unclear. Emerging research suggests DNA damage-induced cellular senescence as a possible driver of mTBI-related sequalae. Cellular senescence is a state of chronic cell-cycle arrest and inflammation associated with physiological aging, mood disorders, dementia, and various neurodegenerative pathologies. This narrative review evaluates the existing studies which identify DNA damage or cellular senescence after TBI (including mild, moderate, and severe TBI) in both experimental animal models and human studies, and outlines how cellular senescence may functionally explain both the molecular and clinical manifestations of TBI. Studies on this subject clearly show accumulation of various forms of DNA damage (including oxidative damage, single-strand breaks, and double-strand breaks) and senescent cells after TBI, and indicate that cellular senescence may be an early event after TBI. Further studies are required to understand the role of sex, cell-type specific mechanisms, and temporal patterns, as senescence may be a pathway of interest to target for therapeutic purposes including prognosis and treatment.
Insights
DNA damage and cellular senescence may drive long-term issues after mild traumatic brain injury (mTBI). This review explores how senescence, a cell-cycle arrest state, links TBI to neuroinflammation and neurodegeneration.
Area of Science:
- Neuroscience
- Cell Biology
- Pathology
Background:
- Mild traumatic brain injury (mTBI) can cause lasting neurological problems and increase neurodegenerative disease risk.
- Mechanisms behind mTBI-induced neuroinflammation, gliosis, and proteinopathy are unclear.
- Cellular senescence, linked to aging and neurodegeneration, is an emerging focus in TBI research.
Purpose of the Study:
- To review studies on DNA damage and cellular senescence following TBI.
- To explore how cellular senescence may explain TBI's molecular and clinical effects.
- To highlight senescence as a potential therapeutic target for TBI.
Main Methods:
- Narrative review of experimental animal models and human studies on TBI.
- Evaluation of evidence for DNA damage and senescent cells post-TBI.
- Synthesis of findings to link senescence to TBI pathophysiology.
Main Results:
- Studies confirm DNA damage accumulation (oxidative, single-strand, double-strand breaks) after TBI.
- Evidence shows senescent cells accumulate post-TBI, potentially early.
- Cellular senescence is implicated as a driver of TBI-related sequelae.
Conclusions:
- Cellular senescence is a plausible mechanism explaining TBI's long-term neurological consequences.
- Senescence may be an early event in TBI, offering a therapeutic window.
- Further research is needed on sex-specific, cell-type specific, and temporal aspects of TBI-induced senescence.
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