To determine if ciliary neuro-CNTFRa, however, the increase in CNTF mRNA was trophic factor (CNTF) is involved in the response to evident both rostral and caudal to the lesion. Levels spinal cord injury, we studied changes in the expression of CNTF and that of its receptor, CNTF-receptor of both CNT
Neurotrophic factors expressed in both cortex and spinal cord induce axonal plasticity after spinal cord injury
β Scribed by Lijun Zhou; H. David Shine
- Publisher
- John Wiley and Sons
- Year
- 2003
- Tongue
- English
- Weight
- 265 KB
- Volume
- 74
- Category
- Article
- ISSN
- 0360-4012
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β¦ Synopsis
Abstract
We reported recently that overexpression of neurotrophinβ3 (NTβ3) by motoneurons in the spinal cord of rats will induce sprouting of corticospinal tract (CST) axons (Zhou et al. [2003] J. Neurosci. 23:1424β1431). We now report that overexpression of brainβderived neurotrophic factor (BDNF) or glial cellβderived neurotrophic factor (GDNF) in the rat sensorimotor cortex near the CST neuronal cell bodies together with overexpression of NTβ3 in the lumbar spinal cord significantly increases axonal sprouting compared to that induced by NTβ3 alone. Two weeks after unilaterally lesioning the CST at the level of the pyramids, we injected rats with saline or adenoviral vectors (Adv) carrying genes coding for BDNF (Adv.BDNF), GDNF (Adv.GDNF) or enhanced green fluorescent protein (Adv.EGFP) at six sites in the sensorimotor cortex, while delivering Adv.NT3 to motoneurons in each of these four groups on the lesioned side of the spinal cord by retrograde transport from the sciatic nerve. Four days later, biotinylated dextran amine (BDA) was injected into the sensorimotor cortex on the unlesioned side to mark CST axons in the spinal cord. Morphometric analysis of axonal sprouting 3 weeks after BDA injection showed that the number of CST axons crossing the midline in rats treated with Adv.BDNF or Adv.GDNF were 46% and 52% greater, respectively, than in rats treated with Adv.EGFP or PBS (P < 0.05). These data demonstrate that sustained local expression of neurotrophic factors in the sensorimotor cortex and spinal cord will promote increased axonal sprouting after spinal cord injury, providing a basis for continued development of neurotrophic factor therapy for central nervous system damage. Β© 2003 WileyβLiss, Inc.
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