1Yan Q, Elliott J, Snider WD. Brain-derived neurotrophic factor rescues spinal motor neurons from axotomy-induced cell death[J]. Nature, 1992, 360(6406): 753.
2Novikova LN,Novikov LN,Kellerth JO.Survival effects of BDNF and NT-3 on axotomized rubrospinal neurons depend on the temporal pattern of neurotrophin administration [J].European Journal of Neuroscience,2000,12,776-780.
3Namiki J, Kojima A, Tator CH. Effect of Brain-Derived neurotrophic factor, nerve growth factor,and neurotrophin-3 on functional recovery and regeneration after spinal cord injury in adult rats [J]. J Neurotrauma, 2000, 17(12):1219-1231.
4Koda M, Hashimoto M, Mumkami M, et al. Adenovirus vector-mediated in vivo gene transfer of brain-derived neurotrophic factor(BDNF) promotes rubrospinal axonal regeneration and functional recovery after complete transection of the adult rat spinal cord [J].J Neurotrauma,2004,21(3):329-337.
5Bamber NI, Li HY, Lu XB, et al. Neurotrophins BDNF and NT-3 promote axonal re-entry into the distal host spinal cord through Schwann cellseeded mini-channels[J]. European Journal of Neuroscience,2001,13,257-268.
3Henderson CE. Role of neurotrophic factors in neuronal development[J]. Curr opin Neuro, 1996,6:64-68.
4Andrew Gibbonsa, Nigel Wrefordb, Jacinta Pankhursta, et al.Continuous supply of the neurotrophins BDNF and NT-3 improve chick motor neuron survival in vivo[J]. Int. J. Devl Neuroscience,2005, 23:389-396
5Barde YA, Edgar D, Thoenen H. Purification of a new neurotrophic factor from mammalian brain[J]. Eur Molec Biolog J, 1982, 1:549
6Koda M, Hashimoto M, Murakami M, et al. Adenovirus vector-mediated in vivo gene transfer of brain-derived neurotrophic factor (BDNF) promotes rubrospinal axonal regeneration and functional recovery after complete transection ofthe adult rat spinal cord[J]. J Neurotrauma, 2004,2 1(3):329-337.
7Yah Q, Matbcson C, Lopez OT. The biological responses of axotomized adult motoneurons to brain- derived neurotrophie factor[J]. Neurosci, 1994, 14(9):5281-5291
8Menei P, Montero Menei C, Whittemore SR, et al. Schwann cells genetically modified to secrete human BDNF promote enhanced axonal growth across transected adult rat spinal cord[J]. Eur J Neurosci, 1998, 10:607-621