Literature DB >> 29126888

Single severe traumatic brain injury produces progressive pathology with ongoing contralateral white matter damage one year after injury.

Francesca Pischiutta1, Edoardo Micotti1, Jennifer R Hay2, Ines Marongiu1, Eliana Sammali3, Daniele Tolomeo1, Gloria Vegliante1, Nino Stocchetti4, Gianluigi Forloni1, Maria-Grazia De Simoni1, William Stewart2, Elisa R Zanier5.   

Abstract

There is increasing recognition that traumatic brain injury (TBI) may initiate long-term neurodegenerative processes, particularly chronic traumatic encephalopathy. However, insight into the mechanisms transforming an initial biomechanical injury into a neurodegenerative process remain elusive, partly as a consequence of the paucity of informative pre-clinical models. This study shows the functional, whole brain imaging and neuropathological consequences at up to one year survival from single severe TBI by controlled cortical impact in mice. TBI mice displayed persistent sensorimotor and cognitive deficits. Longitudinal T2 weighted magnetic resonance imaging (MRI) showed progressive ipsilateral (il) cortical, hippocampal and striatal volume loss, with diffusion tensor imaging demonstrating decreased fractional anisotropy (FA) at up to one year in the il-corpus callosum (CC: -30%) and external capsule (EC: -21%). Parallel neuropathological studies indicated reduction in neuronal density, with evidence of microgliosis and astrogliosis in the il-cortex, with further evidence of microgliosis and astrogliosis in the il-thalamus. One year after TBI there was also a decrease in FA in the contralateral (cl) CC (-17%) and EC (-13%), corresponding to histopathological evidence of white matter loss (cl-CC: -68%; cl-EC: -30%) associated with ongoing microgliosis and astrogliosis. These findings indicate that a single severe TBI induces bilateral, long-term and progressive neuropathology at up to one year after injury. These observations support this model as a suitable platform for exploring the mechanistic link between acute brain injury and late and persistent neurodegeneration.
Copyright © 2017 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Inflammation; Long-term outcome; Neurodegeneration; Neuroimaging; Traumatic brain injury; White matter damage

Mesh:

Year:  2017        PMID: 29126888      PMCID: PMC5745280          DOI: 10.1016/j.expneurol.2017.11.003

Source DB:  PubMed          Journal:  Exp Neurol        ISSN: 0014-4886            Impact factor:   5.330


  69 in total

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5.  Protection of Brain Injury by Amniotic Mesenchymal Stromal Cell-Secreted Metabolites.

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7.  Clinical correlates in an experimental model of repetitive mild brain injury.

Authors:  Rebekah Mannix; William P Meehan; Joseph Mandeville; Patricia E Grant; Tory Gray; Jacqueline Berglass; Jimmy Zhang; John Bryant; Shervin Rezaie; Joon Yong Chung; Nicholas V Peters; Christopher Lee; Lee W Tien; David L Kaplan; Mel Feany; Michael Whalen
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Review 8.  FSL.

Authors:  Mark Jenkinson; Christian F Beckmann; Timothy E J Behrens; Mark W Woolrich; Stephen M Smith
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9.  Longitudinal diffusion tensor imaging and neuropsychological correlates in traumatic brain injury patients.

Authors:  Kimberly D Farbota; Barbara B Bendlin; Andrew L Alexander; Howard A Rowley; Robert J Dempsey; Sterling C Johnson
Journal:  Front Hum Neurosci       Date:  2012-06-19       Impact factor: 3.169

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Authors:  Robin E A Green; Brenda Colella; Jerome J Maller; Mark Bayley; Joanna Glazer; David J Mikulis
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Journal:  Behav Brain Res       Date:  2018-09-10       Impact factor: 3.332

2.  Interferon-β Plays a Detrimental Role in Experimental Traumatic Brain Injury by Enhancing Neuroinflammation That Drives Chronic Neurodegeneration.

Authors:  James P Barrett; Rebecca J Henry; Kari Ann Shirey; Sarah J Doran; Oleg D Makarevich; Rodney M Ritzel; Victoria A Meadows; Stefanie N Vogel; Alan I Faden; Bogdan A Stoica; David J Loane
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3.  Aberrant ER Stress Induced Neuronal-IFNβ Elicits White Matter Injury Due to Microglial Activation and T-Cell Infiltration after TBI.

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Review 4.  Imaging biomarkers of epileptogenecity after traumatic brain injury - Preclinical frontiers.

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Journal:  Neurobiol Dis       Date:  2018-10-12       Impact factor: 5.996

Review 5.  Post-Traumatic Epilepsy and Comorbidities: Advanced Models, Molecular Mechanisms, Biomarkers, and Novel Therapeutic Interventions.

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Authors:  Elisa R Zanier; Ilaria Bertani; Eliana Sammali; Francesca Pischiutta; Maria Antonietta Chiaravalloti; Gloria Vegliante; Antonio Masone; Alessandro Corbelli; Douglas H Smith; David K Menon; Nino Stocchetti; Fabio Fiordaliso; Maria-Grazia De Simoni; William Stewart; Roberto Chiesa
Journal:  Brain       Date:  2018-09-01       Impact factor: 13.501

7.  Cortical Neuromodulation of Remote Regions after Experimental Traumatic Brain Injury Normalizes Forelimb Function but is Temporally Dependent.

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8.  Long pentraxin PTX3 is upregulated systemically and centrally after experimental neurotrauma, but its depletion leaves unaltered sensorimotor deficits or histopathology.

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9.  In-depth characterization of a mouse model of post-traumatic epilepsy for biomarker and drug discovery.

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10.  Traumatic brain injury results in unique microglial and astrocyte transcriptomes enriched for type I interferon response.

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Journal:  J Neuroinflammation       Date:  2021-07-05       Impact factor: 9.587

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