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Journal Abstract Search


98 related items for PubMed ID: 7545067

  • 1. Brain-derived neurotrophic factor works coordinately with partner molecules to initiate tyrosine hydroxylase expression in striatal neurons.
    Du X, Stull ND, Iacovitti L.
    Brain Res; 1995 May 22; 680(1-2):229-33. PubMed ID: 7545067
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  • 2. Multiple signaling pathways direct the initiation of tyrosine hydroxylase gene expression in cultured brain neurons.
    Du X, Iacovitti L.
    Brain Res Mol Brain Res; 1997 Oct 15; 50(1-2):1-8. PubMed ID: 9406911
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  • 3. Protein kinase C activators work in synergy with specific growth factors to initiate tyrosine hydroxylase expression in striatal neurons in culture.
    Du X, Iacovitti L.
    J Neurochem; 1997 Feb 15; 68(2):564-9. PubMed ID: 9003041
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  • 4. Parallel induction of the formation of dopamine and its metabolites with induction of tyrosine hydroxylase expression in foetal rat and human cerebral cortical cells by brain-derived neurotrophic factor and glial-cell derived neurotrophic factor.
    Theofilopoulos S, Goggi J, Riaz SS, Jauniaux E, Stern GM, Bradford HF.
    Brain Res Dev Brain Res; 2001 Apr 30; 127(2):111-22. PubMed ID: 11334998
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  • 6. Effects of donor age and brain-derived neurotrophic factor on the survival of dopaminergic neurons and axonal growth in postnatal rat nigrostriatal cocultures.
    Ostergaard K, Jones SA, Hyman C, Zimmer J.
    Exp Neurol; 1996 Dec 30; 142(2):340-50. PubMed ID: 8934565
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  • 9. Novel expression of the tyrosine hydroxylase gene requires both acidic fibroblast growth factor and an activator.
    Du X, Stull ND, Iacovitti L.
    J Neurosci; 1994 Dec 30; 14(12):7688-94. PubMed ID: 7527848
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  • 10. The response of human and rat fetal ventral mesencephalon in culture to the brain-derived neurotrophic factor treatment.
    Zhou J, Bradford HF, Stern GM.
    Brain Res; 1994 Sep 05; 656(1):147-56. PubMed ID: 7804829
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  • 11. Glial cell line-derived neurotrophic factor prevents death, but not reductions in tyrosine hydroxylase, of injured nigrostriatal neurons in adult rats.
    Lu X, Hagg T.
    J Comp Neurol; 1997 Nov 24; 388(3):484-94. PubMed ID: 9368855
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  • 12. The stimulatory effect of brain-derived neurotrophic factor on dopaminergic phenotype expression of embryonic rat cortical neurons in vitro.
    Zhou J, Bradford HF, Stern GM.
    Brain Res Dev Brain Res; 1994 Sep 16; 81(2):318-24. PubMed ID: 7813052
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  • 14. Glial cell line-derived neurotrophic factor is expressed in the developing but not adult striatum and stimulates developing dopamine neurons in vivo.
    Strömberg I, Björklund L, Johansson M, Tomac A, Collins F, Olson L, Hoffer B, Humpel C.
    Exp Neurol; 1993 Dec 16; 124(2):401-12. PubMed ID: 7904571
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  • 16. Spatial and temporal growth factor influences on developing midbrain dopaminergic neurons.
    Engele J.
    J Neurosci Res; 1998 Aug 15; 53(4):405-14. PubMed ID: 9710260
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  • 17. Subpopulations of striatal interneurons can be distinguished on the basis of neurotrophic factor expression.
    Bizon JL, Lauterborn JC, Gall CM.
    J Comp Neurol; 1999 May 31; 408(2):283-98. PubMed ID: 10333275
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  • 18. Striatal extracts promote the survival and phenotypic expression of rat fetal dopaminergic neurons in vitro.
    Zhou J, Shen Y, Tang Z, Xu L, Bradford HF, Yu Y.
    Neurosci Lett; 2000 Sep 29; 292(1):5-8. PubMed ID: 10996436
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  • 19. Increased survival of dopaminergic neurons in striatal grafts of fetal ventral mesencephalic cells exposed to neurotrophin-3 or glial cell line-derived neurotrophic factor.
    Espejo M, Cutillas B, Arenas TE, Ambrosio S.
    Cell Transplant; 2000 Sep 29; 9(1):45-53. PubMed ID: 10784066
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  • 20. GDNF protects nigral dopamine neurons against 6-hydroxydopamine in vivo.
    Kearns CM, Gash DM.
    Brain Res; 1995 Feb 20; 672(1-2):104-11. PubMed ID: 7749731
    [Abstract] [Full Text] [Related]


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