Different patterns of induction of fibroblast growth factor-2 and brain-derived neurotrophic factor messenger RNAs during kindling epileptogenesis, and development of a herpes simplex vector for fibroblast growth factor-2 gene transfer in vivo
G. Bregola et al., Different patterns of induction of fibroblast growth factor-2 and brain-derived neurotrophic factor messenger RNAs during kindling epileptogenesis, and development of a herpes simplex vector for fibroblast growth factor-2 gene transfer in vivo, EPILEPSIA, 41, 2000, pp. S122-S126
Purpose: To investigate the gene expression patterns of brain-derived neuro
trophic factor (BDNF) and fibroblast growth factor-2 (FGF-2) in the kindlin
g model, and to construct a replication-defective herpes simplex virus vect
or to induce expression of FGF-2 in vivo.
Methods: RNase protection assay and herpes simplex virus vector (TH FGF-2)
deleted in the immediate-early genes ICP4, ICP22, and ICP27, with FGF-2 ins
erted in tk under the control of the human cytomegalovirus immediate-early
promoter.
Results: A single kindling stimulation did not modify BDNF gene expression,
whereas it increased FGF-2 messenger RNA (mRNAA levels in the hippocampus,
the cortex, and the hypothalamus. BDNF and FGF-2 gene expression were not
altered in kindled animals left unstimulated for 1 week. In contrast, kindl
ed seizures produced a great increase in hippocampal and cortical BDNF mRNA
levels, but FGF-2 mRNA was increased only in the ipsilateral cortex. Infec
tion of Vero cells with TH FGF-2 resulted in a long-lasting increase in FGF
-2 levels. Protein extracts of infected cells induced neuronal differentiat
ion of PC12 cells, indicating that the newly synthesized FGF-2 was biologic
ally active. Robust transient transgene expression was observed in the rat
hippocampus after inoculation with TH FGF-2 in the absence of significant t
oxicity.
Conclusions: BDNF and FGF-2 are recruited at different stages of kindling a
nd, accordingly, may play different roles in the adaptive changes taking pl
ace during epileptogenesis. TH FGF-2 is suitable for studies of FGF-2 invol
vement in kindling epileptogenesis.