Expression of FGF-2 in neural progenitor cells enhances their potential for cellular brain repair in the rodent cortex

被引:60
作者
Dayer, Alexandre G.
Jenny, Benoit
Sauvain, Marc-Olivier
Potter, Gael
Salmon, Patrick
Zgraggen, Eloisa
Kanemitsu, Michiko
Gascon, Eduardo
Sizonenko, Stephane
Trono, Didier
Kiss, Jozsef Z.
机构
[1] Univ Geneva, Sch Med, Ctr Med Univ Geneva, Dept Neurosci, CH-1211 Geneva 4, Switzerland
[2] Univ Hosp Geneva, Dept Adult Psychiat, CH-1211 Geneva, Switzerland
[3] Univ Hosp Geneva, Dept Neurosurg, CH-1211 Geneva 4, Switzerland
[4] Ecole Polytech Fed Lausanne, Sch Life Sci, CH-1015 Lausanne, Switzerland
关键词
brain repair; neonatal ischemia; neural progenitors; transplantation; migration; FGF-2;
D O I
10.1093/brain/awm200
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Strategies to enhance the capacity of grafted stem/progenitors cells to generate multipotential, proliferative and migrating pools of cells in the postnatal brain could be crucial for structural repair after brain damage. We investigated whether the over-expression of basic fibroblast growth factor 2 (FGF-2) in neural progenitor cells (NPCs) could provide a robust source of migrating NPCs for tissue repair in the rat cerebral cortex. Using live imaging we provide direct evidence that FGF-2 over-expression significantly enhances the migratory capacity of grafted NPCs in complex 3D structures, such as cortical slices. Furthermore, we show that the migratory as well as proliferative properties of FGF-2 over-expressing NPCs are maintained after in vivo transplantation. Importantly, after transplantation into a neonatal ischaemic cortex, FGF-2 over-expressing NPCs efficiently invade the injured cortex and generate an increased pool of immature neurons available for brain repair. Differentiation of progenitor cells into immature neurons was correlated with a gradual down-regulation of the FGF-2 transgene. These results reveal an important role for FGF-2 in regulating NPCs functions when interacting with the host tissue and offer a potential strategy to generate a robust source of migrating and immature progenitors for repairing a neonatal ischaemic cortex.
引用
收藏
页码:2962 / 2976
页数:15
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