Alterations in neurofilaments associated with reactive brain changes and axonal sprouting following acute physical injury to the rat neocortex

被引:54
作者
King, CE [1 ]
Canty, AJ [1 ]
Vickers, JC [1 ]
机构
[1] Univ Tasmania, Fac Hlth Sci, Discipline Pathol, Neurodegenerat Res Lab, Hobart, Tas 7000, Australia
关键词
cytoskeleton; microglia; trauma;
D O I
10.1046/j.1365-2990.2001.00317.x
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
In order to study the changes in axons related to acute localized physical trauma, a 25 gauge needle was inserted into the somatosensory cortex of anaesthetized adult rats. Animals were examined over 11 time points. From 30 min to 14 days postinjury. Initially. the central needle tract was surrounded by 'reactive' abnormal axons characterized by their bulb- or ring-like immunoreactivity for neurofila ments. Quantification demonstrated that these structures reached a peak density at 24 h postinjury, followed by a gradual decrease over 2 weeks. By 5 days postinjury, long axons showing high levels of neurofilament labelling were localized to the lesion area, either aligned parallel to the tract edges or extending into the bridge of tissue forming between the tract edges. Double-labelling demonstrated a close association between sprouting axons and ferritin-labelled microglia. Immunolabelling for GAP43 also demonstrated the presence of sprouting axons within this tissue bridge. Ultrastuctural examination showed that sprouting axons contained a high density of neurofilaments, with a leading edge lacking these filaments. Injury to the adult neocortex is associated with reactive and sprouting changes within axons, coordinated with the proliferation of microglia and wound healing. These data also support a role for neurofilaments in axonal sprouting following brain injury.
引用
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页码:115 / 126
页数:12
相关论文
共 27 条
[1]  
AUTILIOGAMBETTI L, 1981, J NEUROCHEM, V46, P327
[2]  
Batchelor PE, 1999, J NEUROSCI, V19, P1708
[3]   THE HEAVY NEUROFILAMENT PROTEIN IS EXPRESSED IN REGENERATING ADULT BUT NOT EMBRYONIC MAMMALIAN OPTIC FIBERS INVITRO [J].
BATES, CA ;
MEYER, RL .
EXPERIMENTAL NEUROLOGY, 1993, 119 (02) :249-257
[4]   AXONAL GROWTH AND ITS INHIBITION [J].
BERRY, M ;
HALL, S ;
SHEWAN, D ;
COHEN, J .
EYE, 1994, 8 :245-254
[5]   Characterization of a prolonged regenerative attempt by diffusely injured axons following traumatic brain injury in adult cat: a light and electron microscopic immunocytochemical study [J].
Christman, CW ;
Salvant, JB ;
Walker, SA ;
Povlishock, JT .
ACTA NEUROPATHOLOGICA, 1997, 94 (04) :329-337
[6]   SPONTANEOUS REGENERATION OF CUT AXONS IN ADULT-RAT BRAIN [J].
FOERSTER, AP .
JOURNAL OF COMPARATIVE NEUROLOGY, 1982, 210 (04) :335-356
[7]   Cellular dynamics of macrophages and microglial cells in reaction to stab wounds in rat cerebral cortex [J].
Fujita, T ;
Yoshimine, T ;
Maruno, M ;
Hayakawa, T .
ACTA NEUROCHIRURGICA, 1998, 140 (03) :275-279
[8]   DEVELOPMENT OF NEURONAL POLARITY - GAP-43 DISTINGUISHES AXONAL FROM DENDRITIC GROWTH CONES [J].
GOSLIN, K ;
SCHREYER, DJ ;
SKENE, JHP ;
BANKER, G .
NATURE, 1988, 336 (6200) :672-674
[9]  
GUILLERY R W, 1965, Prog Brain Res, V14, P57
[10]   Traumatic brain injury in rats results in increased expression of Gap-43 that correlates with behavioral recovery [J].
Hulsebosch, CE ;
DeWitt, DS ;
Jenkins, LW ;
Prough, DS .
NEUROSCIENCE LETTERS, 1998, 255 (02) :83-86