Search Results - "De Vitry, F"

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  1. 1

    Serotonin Initiates and Autoamplifies Its Own Synthesis during Mouse Central Nervous System Development by De Vitry, F., Hamon, M., Catelon, J., Dubois, M., Thibault, J.

    “…Some cells from cultured embryonic mouse hypothalamus were found to express aromatic-L-amino acid decarboxylase (EC 4.1.1.28) activity and serotonin uptake and…”
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    Presumptive Common Precursor for Neuronal and Glial Cell Lineages in Mouse Hypothalamus by De Vitry, F., Picart, R., Jacque, C., Legault, L., Dupouey, P., Tixier-Vidal, A.

    “…The cellular localization of a neuronal and a glial cell specific protein (14-3-2 and S-100, respectively) has been explored in mouse hypothalamus in order to…”
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    Establishment of a Clone of Mouse Hypothalamic Neurosecretory Cells Synthesizing Neurophysin and Vasopressin by De Vitry, F., Camier, M., Czernichow, P., Ph. Benda, Cohen, P., Tixier-Vidal, A.

    “…Hypothalamic cells taken from 14-day-old mouse embryos were cultured for 6 days and transformed with simian virus 40. After cloning, a homogeneous cell…”
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    Identification of a human glial fibrillary acidic protein cDNA: a tool for the molecular analysis of reactive gliosis in the mammalian central nervous system by Rataboul, P, Faucon Biguet, N, Vernier, P, De Vitry, F, Boularand, S, Privat, A, Mallet, J

    Published in Journal of neuroscience research (01-06-1988)
    “…Two clones encoding human glial fibrillary acidic protein (GFAP) were isolated from a human astrocytoma cDNA library. The clones pHGFAP1 and pHGFAP2 were…”
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    Evidence that mouse astrocytes may be derived from the radial glia. An immunohistochemical study of the cerebellum in the normal and reeler mouse by Benjelloun-Touimi, S, Jacque, C M, Derer, P, De Vitry, F, Maunoury, R, Dupouey, P

    Published in Journal of neuroimmunology (01-01-1985)
    “…Astrocytic cells of unusual aspect can be detected in the cerebellum of normal mice during the first 4 weeks of life. They are visualized with anti-GFAP (glial…”
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    Dopamine increases the expression of tyrosine hydroxylase and aromatic amino acid decarboxylase in primary cultures of fetal neurons by De Vitry, F, Hillion, J, Catelon, J, Thibault, J, Benoliel, J J, Hamon, M

    “…Previous studies, aimed at identifying which diffusible signals may influence the differentiation of embryonic neurons towards the monoaminergic phenotypes…”
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    Glial fibrillary acidic protein. A cellular marker of tanycytes in the mouse hypothalamus by de Vitry, F, Picart, R, Jacque, C, Tixier-Vidal, A

    Published in Developmental neuroscience (1981)
    “…The differentiation of tanycytes during development of the mouse hypothalamus has been followed by immunohistochemistry with a GFA protein antiserum. Radially…”
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    Expression of carbonic anhydrase II gene in early brain cells as revealed by in situ hybridization and immunohistochemistry by De Vitry, F, Gomes, D, Rataboul, P, Dumas, S, Hillion, J, Catelon, J, Delaunoy, J P, Tixier-Vidal, A, Dupouey, P

    Published in Journal of neuroscience research (01-02-1989)
    “…A mouse carbonic anhydrase (CA II) complementary(c) DNA probe was used for in situ hybridization on mouse brain cultured cells in order to follow CA II gene…”
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    Dissociated cell cultures from fetal mouse hypothalamus. Patterns of organization and ultrastructural features by Benda, P, De Vitry, F, Picart, R, Tixier-Vidal, A

    Published in Experimental brain research (01-08-1975)
    “…Dissociated fetal hypothalamic cells mainly taken from 14 day-old mouse fetuses were grown in vitro for increasing time (9 to 60 days). Soon after inoculation…”
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    Early expression of carbonic anhydrase II (CAII) in transitory glial cells of the developing murine nervous system by Benjelloun, S, Delaunoy, J P, Gomes, D, De Vitry, F, Langui, D, Dupouey, P

    Published in Developmental neuroscience (01-01-1986)
    “…Using immunocytochemical methods carbonic anhydrase II (CAII) has been detected in the embryonic mouse central nervous system as early as in stage E16. In the…”
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    Ultrastructural and cytochemical features of SV 40 transformed hypothalamic cell lines by Tixier-Vidal, A, De Vitry, F

    Published in Cell and tissue research (16-08-1976)
    “…A continuous cell line was previously obtained by Simian Virus (SV) 40 transformation of primary cultures of dissociated mouse fetal hypothalami. One clone…”
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    Induction of oligodendrocyte‐like properties in a primitive hypothalamic cell line by cholesterol, an eye derived growth factor and brain extract by Vitry, F., Delaunoy, J.P., Thibault, J., Buisson, N., Lamande, N., Legault, L., Delasalle, A., Dupouey, P.

    Published in The EMBO journal (01-01-1983)
    “…A serum‐free medium has been devised which permits proliferation of the mouse primitive nervous cell line F7. When cholesterol, eye‐derived growth factor and…”
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    Immunological detection of somatostatin in a primitive hypothalamic mouse cell line, precursor of a neurophysin cell lineage by de Vitry, F, Dubois, M, Tixier-Vidal, A

    Published in Journal de physiologie (01-05-1979)
    “…A primitive nerve cell line (F7 clone), obtained by SV 40 transformation of mouse fetal hypothalamic cells, has been previously shown to share some properties…”
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    Prenatal developmental expression of rat brain 5-HT1A receptor gene followed by PCR by Hillion, J, Milne-Edwards, J B, Catelon, J, de Vitry, F, Gros, F, Hamon, M

    “…Expression of the gene encoding the serotonin 5-HT1A receptor was investigated in the brain of rats from embryonic day (ED) 10 to postnatal day 18 using PCR…”
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    Myogenic cells in the rat embryonic brain stem by De Vitry, F, Hillion, J, Catelon, J, Gros, F

    “…The principal finding of this study is the establishment of culture conditions that permit the survival of a very limited population of muscle precursor cells…”
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    Neuronal localization of 5-HT1A receptor mRNA and protein in rat embryonic brain stem cultures by Hillion, J, Catelon, J, Raid, M, Hamon, M, De Vitry, F

    “…The aim of the present work was to study the cellular localization of 5-HT1A receptor protein and mRNA in rat embryonic brain cultures. Primary cultures of the…”
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