COMBINED FLUID PERCUSSION BRAIN INJURY AND ENTORHINAL CORTICAL LESION - A MODEL FOR ASSESSING THE INTERACTION BETWEEN NEUROEXCITATION AND DEAFFERENTATION

被引:46
作者
PHILLIPS, LL
LYETH, BG
HAMM, RJ
POVLISHOCK, JT
机构
[1] VIRGINIA COMMONWEALTH UNIV,MED COLL VIRGINIA,DEPT ANAT,RICHMOND,VA 23298
[2] VIRGINIA COMMONWEALTH UNIV,DEPT PSYCHOL,RICHMOND,VA 23284
关键词
D O I
10.1089/neu.1994.11.641
中图分类号
R4 [临床医学];
学科分类号
1002 ; 100602 ;
摘要
Laboratory studies suggest that excessive neuroexcitation and deafferentation contribute to long-term morbidity following human head injury. Because no current animal model of traumatic brain injury (TBI) has been shown to combine excessive neuroexcitation and significant levels of deafferentation, we developed a rat model combining the neuroexcitation of fluid percussion TBI with subsequent entorhinal cortical (EC) deafferentation. In this paradigm, moderate fluid percussion TBI was induced in each rat, followed 24 h later by bilateral EC lesion (BEG). Six conditions were examined: (1) fluid percussion TBI followed 24 h later by bilateral EC lesion (TBEC), (2) fluid percussion TBI (TBI), (3) bilateral EC lesion (BEG), (4) sham fluid percussion TBI (SHAM), (5) TBI followed 24 h later by unilateral EC lesion (TUEC), and (6) unilateral EC lesion (UEC). The first four groups were assessed for motor (with beam-balance and beam-walk testing) and cognitive deficits (with the Morris water maze) and hippocampal morphology (with immunocytochemistry and electron microscopy). The TUEC and UEC groups were assessed for cognitive deficits alone. Motor deficits were greater in the TBEC injury than in TBI or sham alone; however, no significant difference was observed between the TBEC and BEC conditions in motor performance. Cognitive deficits were of a greater magnitude in the combined TBEC injury model relative to each individual insult. These cognitive deficits appeared to be additive for the two experimental injuries, BEC deafferentation producing deficits intermediate between TBI and TBEC insults. Morphologic analysis of the dentate gyrus molecular layer at 15 days after TBEC showed that the distribution of synaptophysin-positive presynaptic terminals was distinct from that observed after either TBI or BEC alone. Specifically, the laminar pattern of presynaptic rearrangement induced by BEC lesion did not occur after TBEC injury. The present results show that axonal injury and its attendant deafferentation, when coupled with traumatically induced neuroexcitation, produce an enhancement of the morbidity associated with TBI. Moreover, they indicate that this model can effectively be used to study the interaction between neuroexcitation and synaptic plasticity.
引用
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页码:641 / 656
页数:16
相关论文
共 48 条
[1]  
CALBAKA LM, 1992, NEUROBIOL AGING, V13, P283
[2]  
Cotman C.W., 1978, NEURONAL PLASTICITY, P227
[3]   A FLUID PERCUSSION MODEL OF EXPERIMENTAL BRAIN INJURY IN THE RAT [J].
DIXON, CE ;
LYETH, BG ;
POVLISHOCK, JT ;
FINDLING, RL ;
HAMM, RJ ;
MARMAROU, A ;
YOUNG, HF ;
HAYES, RL .
JOURNAL OF NEUROSURGERY, 1987, 67 (01) :110-119
[4]   THE ROLE OF EXCITATORY AMINO-ACIDS AND NMDA RECEPTORS IN TRAUMATIC BRAIN INJURY [J].
FADEN, AI ;
DEMEDIUK, P ;
PANTER, SS ;
VINK, R .
SCIENCE, 1989, 244 (4906) :798-800
[5]  
GORMAN LK, 1989, J NEUROTRAUM, V6, P203
[6]   SYNAPTIC REORGANIZATION WITHIN THE HUMAN CENTRAL NERVOUS-SYSTEM FOLLOWING INJURY [J].
GRADY, MS ;
JANE, JA ;
STEWARD, O .
JOURNAL OF NEUROSURGERY, 1989, 71 (04) :534-537
[7]  
HABER B, 1980, NEUROBIOLOGY CEREBRO, P345
[8]   SELECTIVE COGNITIVE IMPAIRMENT FOLLOWING TRAUMATIC BRAIN INJURY IN RATS [J].
HAMM, RJ ;
LYETH, BG ;
JENKINS, LW ;
ODELL, DM ;
PIKE, BR .
BEHAVIOURAL BRAIN RESEARCH, 1993, 59 (1-2) :169-173
[9]  
Hamm RJ, 1993, BRAIN RES COGN BRAIN, V1, P223, DOI [10.1016/0926-6410(93)90006-Q, DOI 10.1016/0926-6410(93)90006-Q]
[10]  
HAYES RL, 1992, J NEUROTRAUMA S1, V9, P173