Acute cytoskeletal alterations and cell death induced by experimental brain injury are attenuated by magnesium treatment and exacerbated by magnesium deficiency

被引:58
作者
Saatman, KE
Bareyre, FM
Grady, MS
McIntosh, TK
机构
[1] Univ Penn, Sch Med, Dept Neurosurg, Philadelphia, PA 19104 USA
[2] Vet Adm Med Ctr, Philadelphia, PA 19104 USA
关键词
calpain; cytoskeleton; head injury; histology; microtubule-associated protein-2; MAP-2; spectrin;
D O I
10.1093/jnen/60.2.183
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Traumatic brain injury results in a profound decline in intracellular magnesium ion levels that may jeopardize critical cellular functions. We examined the consequences of preinjury magnesium deficiency and post-traumatic magnesium treatment on injury-induced cytoskeletal damage and cell death at 24 h after injury. Adult male rats were fed either a normal (n = 24) or magnesium-deficient diet (n = 16) for 2 wk prior to anesthesia and lateral fluid percussion brain injury (n = 31) or sham injury (n = 9). Normally fed animals were then randomized to receive magnesium chloride (125 mu mol, i.v., n = 10) or vehicle solution (n = 11) at 10 min postinjury. Magnesium treatment reduced cortical cell loss (p < 0.05), cortical alterations in microtubule-associated protein-2 (MAP-2) (p < 0.05), and both cortical and hippocampal calpain mediated spectrin breakdown (p < 0.05 for each region) when compared to vehicle treatment. Conversely, magnesium deficiency prior to brain injury led to a greater area of cortical cell loss (p < 0.05 compared to vehicle treatment). Moreover, brain injury to magnesium-deficient rats resulted in cytoskeletal alterations within the cortex and hippocampus that were not observed in vehicle- or magnesium-treated animals. These data suggest that cortical cell death and cytoskeletal disruptions in cortical and hippocampal neurons may be sensitive to magnesium status after experimental brain injury, and may be mediated in part through modulation of calpains.
引用
收藏
页码:183 / 194
页数:12
相关论文
共 80 条
[1]  
Altura B T, 1984, Magnesium, V3, P195
[2]   Postinjury treatment with magnesium chloride attenuates cortical damage after traumatic brain injury in rats [J].
Bareyre, FM ;
Saatman, KE ;
Raghupathi, R ;
McIntosh, TK .
JOURNAL OF NEUROTRAUMA, 2000, 17 (11) :1029-1039
[3]   Alterations in ionized and total blood magnesium after experimental traumatic brain injury: Relationship to neurobehavioral outcome and neuroprotective efficacy of magnesium chloride [J].
Bareyre, FM ;
Saatman, KE ;
Helfaer, MA ;
Sinson, G ;
Weisser, JD ;
Brown, AL ;
McIntosh, TK .
JOURNAL OF NEUROCHEMISTRY, 1999, 73 (01) :271-280
[4]   The calpain hypothesis of neurodegeneration: Evidence for a common cytotoxic pathway [J].
Bartus, RT .
NEUROSCIENTIST, 1997, 3 (05) :314-327
[5]   BLOCKADE OF EXCITATORY AMINO-ACID RECEPTORS PROTECTS ANOXIC HIPPOCAMPAL SLICES [J].
CLARK, GD ;
ROTHMAN, SM .
NEUROSCIENCE, 1987, 21 (03) :665-671
[6]  
Conti AC, 1998, J NEUROSCI, V18, P5663
[7]   Acute focal ischemia-induced alterations in MAP2 immunostaining: Description of temporal changes and utilization as a marker for volumetric assessment of acute brain injury [J].
Dawson, DA ;
Hallenbeck, JM .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 1996, 16 (01) :170-174
[8]   Histological markers of neuronal, axonal and astrocytic changes after lateral rigid impact traumatic brain injury [J].
DunnMeynell, AA ;
Levin, BE .
BRAIN RESEARCH, 1997, 761 (01) :25-41
[9]   Effects of brain temperature on calmodulin and microtubule-associated protein 2 immunoreactivity in the gerbil hippocampus following transient forebrain ischemia [J].
Eguchi, Y ;
Yamashita, K ;
Iwamoto, T ;
Ito, H .
JOURNAL OF NEUROTRAUMA, 1997, 14 (02) :109-118
[10]  
Emery DL, 2000, J COMP NEUROL, V424, P521