Promotion of axonal regeneration in the injured CNS

被引:48
作者
Selzer, ME [1 ]
机构
[1] Univ Penn, Med Ctr, Dept Neurol, Philadelphia, PA 19104 USA
关键词
D O I
10.1016/S1474-4422(03)00322-3
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Molecules that are found in the extracellular environment at a CNS lesion site, or that are associated with myelin, inhibit axon growth. In addition, neuronal changes-such as an age-dependent reduction in concentrations of cyclic AMP-render the neuron less able to respond to axotomy by a rapid, forward, actin-dependent movement. An alternative mechanism, based on the protrusive forces generated by microtubule elongation or the anterograde transport of cytoskeletal elements, may underlie a slower form of axon elongation that happens during regeneration in the mature CNS. Therapeutic approaches that restore the extracellular CNS environment or the neuron's characteristics back to a more embryonic state increase axon regeneration and improve functional recovery after injury. These advances in the understanding of regeneration in the CNS have major implications for neurorehabilitation and for the use of axonal regeneration as a therapeutic approach to disorders of the CNS such as spinal-cord injury.
引用
收藏
页码:157 / 166
页数:10
相关论文
共 142 条
[1]   Constitutive expression of GAP-43 correlates with rapid, but not slow regrowth of injured dorsal root axons in the adult rat [J].
Andersen, LB ;
Schreyer, DJ .
EXPERIMENTAL NEUROLOGY, 1999, 155 (02) :157-164
[2]   Motor and cognitive improvements in patients with Huntington's disease after neural transplantation [J].
Bachoud-Lévi, A ;
Rémy, P ;
Nguyen, JP ;
Brugières, P ;
Lefaucheur, JP ;
Bourdet, C ;
Baudic, S ;
Gaura, V ;
Maison, P ;
Haddad, B ;
Boissé, MF ;
Grandmougin, T ;
Jény, R ;
Bartolomeo, P ;
Dalla Barba, G ;
Degos, JD ;
Lisovoski, F ;
Ergis, AM ;
Pailhous, E ;
Cesaro, P ;
Hantraye, P ;
Peschanski, M .
LANCET, 2000, 356 (9246) :1975-1979
[3]   Autoreactive T cells induce neurotrophin production by immune and neural cells in injured rat optic nerve: Implications for protective autoimmunity [J].
Barouch, R ;
Schwartz, M .
FASEB JOURNAL, 2002, 16 (08) :1304-+
[4]   Lack of evidence that myelin-associated glycoprotein is a major inhibitor of axonal regeneration in the CNS [J].
Bartsch, U ;
Bandtlow, CE ;
Schnell, L ;
Bartsch, S ;
Spillmann, AA ;
Rubin, BP ;
Hillenbrand, R ;
Montag, D ;
Schwab, ME ;
Schachner, M .
NEURON, 1995, 15 (06) :1375-1381
[5]  
Becker CG, 1999, J NEUROSCI, V19, P813
[6]  
Becker T, 1998, J NEUROSCI, V18, P5789
[7]  
Bentley David, 1994, Current Opinion in Neurobiology, V4, P43, DOI 10.1016/0959-4388(94)90030-2
[8]   CHANGES IN CYTOSKELETAL PROTEIN-SYNTHESIS FOLLOWING AXON INJURY AND DURING AXON REGENERATION [J].
BISBY, MA ;
TETZLAFF, W .
MOLECULAR NEUROBIOLOGY, 1992, 6 (2-3) :107-123
[9]  
Blesch A, 1999, J NEUROSCI, V19, P3556
[10]   Spinal axon regeneration evoked by replacing two growth cone proteins in adult neurons [J].
Bomze, HM ;
Bulsara, KR ;
Iskandar, BJ ;
Caroni, P ;
Skene, JHP .
NATURE NEUROSCIENCE, 2001, 4 (01) :38-43