Repetitive mild brain trauma accelerates Aβ deposition, lipid peroxidation, and cognitive impairment in a transgenic mouse model of Alzheimer amyloidosis

被引:277
作者
Uryu, K
Laurer, H
McIntosh, T
Praticò, D
Martinez, D
Leight, S
Lee, VMY
Trojanowski, JQ
机构
[1] Univ Penn, Sch Med, Ctr Neurodegenerat Dis Res, Dept Pathol & Lab Med, Philadelphia, PA 19104 USA
[2] Univ Penn, Sch Med, Ctr Neurodegenerat Dis Res, Dept Neurosurg, Philadelphia, PA 19104 USA
[3] Univ Penn, Sch Med, Ctr Neurodegenerat Dis Res, Dept Pharmacol, Philadelphia, PA 19104 USA
关键词
Alzheimer's disease; amyloid plaques; brain injury; head trauma; APP mice; oxidative stress; cognitive function;
D O I
10.1523/JNEUROSCI.22-02-00446.2002
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Traumatic brain injury (TBI) increases susceptibility to Alzheimer's disease (AD), but it is not known how TBI contributes to the onset or progression of this common late life dementia. To address this question, we studied neuropathological and behavioral consequences of single versus repetitive mild TBI (mTBI) in transgenic (Tg) mice (Tg2576) that express mutant human Abeta precursor protein, and we demonstrate elevated brain Abeta levels and increased Abeta deposition. Nine-month-old Tg2576 and wild-type mice were subjected to single (n = 15) or repetitive (n = 39) mTBI or sham treatment (n = 37). At 2 d and 9 and 16 weeks after treatment, we assessed brain Abeta deposits and levels in addition to brain and urine isoprostanes generated by lipid peroxidation in these mice. A subset of mice also was studied behaviorally at 16 weeks after injury. Repetitive but not single mTBI increased Abeta deposition as well as levels of Abeta and isoprostanes only in Tg mice, and repetitive mTBI alone induced cognitive impairments but no motor deficits in these mice. This is the first experimental evidence linking TBI to mechanisms of AD by showing that repetitive TBI accelerates brain Abeta accumulation and oxidative stress, which we suggest could work synergistically to promote the onset or drive the progression of AD. Additional insights into the role of TBI in mechanisms of AD pathobiology could lead to strategies for reducing the risk of AD associated with previous episodes of brain trauma and for preventing progressive brain amyloidosis in AD patients.
引用
收藏
页码:446 / 454
页数:9
相关论文
共 62 条
[1]   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
[2]  
Bayer TA, 2001, BRAIN PATHOL, V11, P1
[3]   Augmented senile plaque load in aged female β-amyloid precursor protein-transgenic mice [J].
Callahan, MJ ;
Lipinski, WJ ;
Bian, F ;
Durham, RA ;
Pack, A ;
Walker, LC .
AMERICAN JOURNAL OF PATHOLOGY, 2001, 158 (03) :1173-1177
[4]   Purified recombinant insulin-degrading enzyme degrades amyloid β-protein but does not promote its oligomerization [J].
Chesneau, V ;
Vekrellis, K ;
Rosner, MR ;
Selkoe, DJ .
BIOCHEMICAL JOURNAL, 2000, 351 :509-516
[5]  
DIXON CE, 1991, J NEUROSCI METH, V39, P253
[6]   ALTERED CLEAVAGE AND SECRETION OF A RECOMBINANT BETA-APP BEARING THE SWEDISH FAMILIAL ALZHEIMERS-DISEASE MUTATION [J].
FELSENSTEIN, KM ;
HUNIHAN, LW ;
ROBERTS, SB .
NATURE GENETICS, 1994, 6 (03) :251-256
[7]   Effect of traumatic brain injury on mouse spatial and nonspatial learning in the Barnes circular maze [J].
Fox, GB ;
Fan, L ;
LeVasseur, RA ;
Faden, AI .
JOURNAL OF NEUROTRAUMA, 1998, 15 (12) :1037-1046
[8]   Neuronal cytoskeletal changes are an early consequence of repetitive head injury [J].
Geddes, JF ;
Vowles, GH ;
Nicoll, JAR ;
Révész, T .
ACTA NEUROPATHOLOGICA, 1999, 98 (02) :171-178
[9]  
GENTLEMAN SM, 1993, PROG BRAIN RES, V96, P237
[10]   Head injury and the risk of AD in the MIRAGE study [J].
Guo, Z ;
Cupples, LA ;
Kurz, A ;
Auerbach, SH ;
Volicer, L ;
Chui, H ;
Green, RC ;
Sadovnick, AD ;
Duara, R ;
DeCarli, C ;
Johnson, K ;
Go, RC ;
Growdon, JH ;
Haines, JL ;
Kukull, WA ;
Farrer, LA .
NEUROLOGY, 2000, 54 (06) :1316-1323