Literature DB >> 11284547

A new model for diffuse brain injury by rotational acceleration: II. Effects on extracellular glutamate, intracranial pressure, and neuronal apoptosis.

M Runnerstam1, F Bao, Y Huang, J Shi, E Gutierrez, A Hamberger, H A Hansson, D Viano, K Haglid.   

Abstract

The aim of this study is to monitor excitatory amino acids (EAAs) in the extracellular fluids of the brain and to characterize regional neuronal damage in a new experimental model for brain injury, in which rabbits were exposed to 180-260 krad/s2 rotational head acceleration. This loading causes extensive subarachnoid hemorrhage, focal tissue bleeding, reactive astrocytosis, and axonal damage. Animals were monitored for intracranial pressure (ICP) and for amino acids in the extracellular fluids. Immunohistochemistry was used to study expression of the gene c-Jun and apoptosis with the terminal deoxynucleotidyl transferase nick-end labeling (TUNEL) technique. Extracellular glutamate, glycine, and taurine increased significantly in the hippocampus within a few hours and remained high after 24 h. Neuronal nuclei in the granule layers of the hippocampus and cerebellum were positive for c-Jun after 24 h. Little immunoreactivity was detected in the cerebral cortex. c-Jun-positive neuronal perikarya and processes were found in granule and pyramidal CA4 layers of the hippocampus and among the Purkinje cells of the cerebellum. Also some microglial cells stained positively for c-Jun. TUNEL reactivity was most intense at 10 days after trauma and was extensive in neurons of the cerebral cortex, hippocampus, and cerebellum. The initial response of the brain after rotational head injury involves brain edema after 24 h and an excitotoxic neuronal microenvironment in the first hour, which leads to extensive delayed neuronal cell death by apoptosis necrosis in the cerebral cortex, hippocampus and cerebellum.

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Year:  2001        PMID: 11284547     DOI: 10.1089/08977150151070892

Source DB:  PubMed          Journal:  J Neurotrauma        ISSN: 0897-7151            Impact factor:   5.269


  10 in total

1.  Gross morphology and morphometric sequelae in the hippocampus, fornix, and corpus callosum of patients with severe non-missile traumatic brain injury without macroscopically detectable lesions: a T1 weighted MRI study.

Authors:  F Tomaiuolo; G A Carlesimo; M Di Paola; M Petrides; F Fera; R Bonanni; R Formisano; P Pasqualetti; C Caltagirone
Journal:  J Neurol Neurosurg Psychiatry       Date:  2004-09       Impact factor: 10.154

2.  New mechanics of traumatic brain injury.

Authors:  Vladimir G Ivancevic
Journal:  Cogn Neurodyn       Date:  2008-11-23       Impact factor: 5.082

3.  Minimal traumatic brain injury induce apoptotic cell death in mice.

Authors:  V Tashlykov; Y Katz; A Volkov; V Gazit; S Schreiber; O Zohar; C G Pick
Journal:  J Mol Neurosci       Date:  2008-07-24       Impact factor: 3.444

4.  Animal models of human cerebellar ataxias: a cornerstone for the therapies of the twenty-first century.

Authors:  Mario Manto; Daniele Marmolino
Journal:  Cerebellum       Date:  2009-09       Impact factor: 3.847

5.  Structural and functional alterations of cerebellum following fluid percussion injury in rats.

Authors:  Jinglu Ai; Elaine Liu; Eugene Park; Andrew J Baker
Journal:  Exp Brain Res       Date:  2006-08-22       Impact factor: 1.972

6.  A new model to produce sagittal plane rotational induced diffuse axonal injuries.

Authors:  Johan Davidsson; Marten Risling
Journal:  Front Neurol       Date:  2011-06-17       Impact factor: 4.003

7.  Influence of mild traumatic brain injury during pediatric stage on short-term memory and hippocampal apoptosis in adult rats.

Authors:  Mi-Sook Park; Hyean-Ae Oh; Il-Gyu Ko; Sung-Eun Kim; Sang-Hoon Kim; Chang-Ju Kim; Hyun-Bae Kim; Hong Kim
Journal:  J Exerc Rehabil       Date:  2014-06-30

8.  The Presence of the Temporal Horn Exacerbates the Vulnerability of Hippocampus During Head Impacts.

Authors:  Zhou Zhou; Xiaogai Li; August G Domel; Emily L Dennis; Marios Georgiadis; Yuzhe Liu; Samuel J Raymond; Gerald Grant; Svein Kleiven; David Camarillo; Michael Zeineh
Journal:  Front Bioeng Biotechnol       Date:  2022-03-22

Review 9.  Models of traumatic cerebellar injury.

Authors:  Matthew B Potts; Hita Adwanikar; Linda J Noble-Haeusslein
Journal:  Cerebellum       Date:  2009-06-05       Impact factor: 3.847

Review 10.  Towards clinical management of traumatic brain injury: a review of models and mechanisms from a biomechanical perspective.

Authors:  Dhananjay R Namjoshi; Craig Good; Wai Hang Cheng; William Panenka; Darrin Richards; Peter A Cripton; Cheryl L Wellington
Journal:  Dis Model Mech       Date:  2013-09-12       Impact factor: 5.758

  10 in total

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