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Anderson, D. J. and Axel, R (1986). A bipotential neuroendocrine precursor, whose choice of cell fate is determined by NGF and glucocorticoids. Cell 47, 1079-1090.[Medline]

Bronner-Fraser, M. and Fraser, S (1989). Developmental potential of avian trunk neural crest cells in situ. Neuron 3, 755-766.[Medline]

Christie, G. A (1962). Developmental stages in somite and post somite rat embryos based on external appearance, and including some features of the macroscopic development of the oral cavity. J. Morph 114, 263-286.

Coulombe, J. and Bronner-Fraser, M (1986). Cholinergic neurons acquire adrenergic neurotransmitters when transplanted into an embryo. Nature 324, 569-572.[Medline]

DiCicco-Bloom, E. and Black, I. B (1988). Insulin growth factors regulate the mitotic cycle in cultured rat sympathetic neuroblsts. Proc. Natl. Acad. Sci. USA 85, 4066-4070.[Abstract/Free Full Text]

Duff, R. S., Langtimm, C. J., Richardson, M. K. and Sieber-Blum, M (1991). In vitro clonal analysis of progenitor cell patterns in dorsal root and sympathetic ganglia of the quail embryo. Dev. Biol 147, 451-459.[Medline]

Dupin, E., Baroffio, A., Dulac, C., Cameron-Curry, P. and Le Douarin, N. M (1990). Schwann cell differentiation in clonal cultures of the neural crest, as evidenced by the anti-Schwann cell myelin protein monoclonal antibody. Proc. Natl. Acad. Sci. USA 87, 1119-1123.[Abstract/Free Full Text]

Easter, S. S., Ross, L. S. and Frankfurter, A (1993). Initial tract formation in the mouse brain. J. Neurosci 13, 285-299.[Abstract]

Fan, G. and Katz, D. M (1993). Non-neuronal cells inhibit catecholaminergic differentiation of primary sensory neurons: role of leukemia inhibitory factor. Development 118, 83-93.[Abstract]

Frank, E. and Sanes, J. R (1991). Lineage of neurons and glia in chick dorsal root ganglia: analysis in vivo with a recombinant retrovirus. Development 111, 895-908.[Abstract/Free Full Text]

Freidin, M. and Kessler, J. A (1991). Cytokine regulation of substance P expression in sympathetic neurons. Proc. Natl. Acad. Sci.USA 88, 3200-3203.[Abstract/Free Full Text]

Galileo, D. S., Gray, G. E., Owens, G. C., Majors, J. and Sanes, J. R (1990). Neurons and glia arise from a common progenitor in chicken optic tectum: Demonstration with two retroviruses and cell type-specific antibodies. Proc. Natl. Acad. Sci. USA 87, 458-462.[Abstract/Free Full Text]

Garcia-Arraras, J. E., Lugo-Chinchilla, A. M. and Chevere-Colon, I (1992). The expression of neuropeptide Y immunoreactivity in the avian sympathoadrenal system conforms with two models of coexpression development for neurons and chromaffin cells. Development 115, 617-627.[Abstract]

Giloh, H. and Sedat, J. W (1982). Fluorescence microscopy: Reduced photobleaching of rhodamine and fluorescein protein conjugates by n-propyl gallate. Science 217, 1252-1255.[Abstract/Free Full Text]

Gotz, M. and Bolz, J (1994). Differentiation of transmitter phenotypes in rat cerebral cortex. Eur. J. Neurosci 6, 18-32.[Medline]

Gray, G. E., Glover, J. C., Majors, J. and Sanes, J. R (1988). Radial arrangement of clonally related cells in the chicken optic tectum: Lineage analysis with a recombinant retrovirus. Proc. Natl. Acad. Sci.USA 85, 7356-7360.[Abstract/Free Full Text]

Grove, E.A., Williams, B. P., Li, D.-Q., Hajihosseini, M., Friedrich, A. and Price, J (1993). Multiple restricted lineages in the embryonic rat cerebral cortex. Development 117, 553-561.[Abstract]

Hall, A. K. and Landis, S. C (1991). Early commitment of precursor cells from the rat superior cervical ganglion to neuronal or non-neuronal fates. Neuron 6, 741-752.[Medline]

Hall, A. K. and Landis, S. C (1992). Division and migration of satellite glia in the embryonic rat superior cervical ganglion. J. Neurocytol 21, 635-647.[Medline]

Henion, P. D. and Landis, S. C (1990). Asynchronous appearance and topographic segregation of neuropeptide-containing cells in the developing rat adrenal medulla. J. Neurosci 10, 2886-2896.[Abstract]

Huff, R., Furst, A. and Mahowald, A. P (1989). Drosophila embryonic neuroblasts in culture: autonomous differentiation of specific neurotransmitters. Dev. Biol 134, 146-157.[Medline]

Jarvi, R., Helen, P., Pelto-Huikko, M. and Hervonen, A (1986). Neuropeptide Y (NPY) like immunoreactivity in rat sympathetic neurons and small granule-containing cells. Neurosci. Lett 67, 223-227.[Medline]

Landis, S. C (1990). Target regulation of neurotransmitter phenotype. Trends Neurosci 13, 344-350.[Medline]

Lundberg, J. M., Terenius, L., Hokfelt, T., Martling, C. R., Tatemoto, K., Mutt, V., Polak, J., Bloom, S. and Goldstein, M (1982). Neuropeptide Y (NPY)-like immunoreactivity in peripheral noradrenergic neurons and effects of NPY on sympathetic function. Acta Physiol. Scand 116, 477-480.[Medline]

Luskin, M. B., Pearlman, A. L. and Sanes, J. R (1988). Cell lineage in thecerebral cortex of the mouse studied in vivo and in vitro with a recombinant retrovirus. Neuron 1, 635-647.[Medline]

Marek, K. L. and Mains, R. E (1989). Biosynthesis, development and regulation of neuropeptide Y in superior cervical ganglion culture. J. Neurochem 52, 1807-1816.[Medline]

Moody, S. A., Quigg, M. S. and Frankfurter, A (1989). Development of the peripheral trigeminal system in the chick revealed by an isotype specific anti-beta tubulin monoclonal antibody. J. Comp. Neurol 279, 567-580.[Medline]

Nawa, H., Nakanishi, S. and Patterson, P. H (1991). Recombinant cholinergic differentiation factor (Leukemia inhibitory factor) regulates sympathetic neuron phenotype by alterations in the size and amounts of neuropeptide mRNAs. J. Neurochem 56, 2147-2150.[Medline]

Nawa, H. and Sah, D. W. Y (1990). Different biological activities in conditioned media control the expression of a variety of neuropeptides in cultured sympathetic neurons. Neuron 4, 279-287.[Medline]

Patterson, P. H (1990). Control of cell fate in a vertebrate neurogenic lineage. Cell 62, 1035-1038.[Medline]

Patterson, P. H. and Chun, L. L. Y (1974). The influence of non-neuronal cells on catecholamine and acetylcholamine synthesis and accumulation in cultures of dissociated sympathetic neurons. Proc. Natl. Acad. Sci. USA 71, 3607-3610.[Abstract/Free Full Text]

Patterson, P. H. and Chun, L. L. Y (1977). The induction of acetylcholine synthesis in primary cultures of dissociated rat sympathetic neurons. I. The effects of conditioned medium. Dev. Biol 56, 263-280.[Medline]

Price, J., Turner, D. and Cepko, C. L (1987). Lineage analysis in the vertebrate nervous system by retrovirus-mediated gene transfer. Proc. Natl. Acad. Sci.USA 84, 156-160.[Abstract/Free Full Text]

Rao, M. S., Landis, S. C. and Patterson, P. H (1990). The cholinergic differentiation factor from heart cell conditioned medium is different from the cholinergic factors present in sciatic nerve and spinal cord. Dev. Biol 139, 65-74.[Medline]

Rao, M. S., Tyrrell, S., Landis, S. C. and Patterson, P. H (1992). Effects of ciliary neurotrophic factor (CNTF) and depolarization on neuropeptide expression in cultured sympathetic neurons. Dev. Biol 150, 281-293.[Medline]

Rohrer, H. and Thoenen, H (1987). Relationship between differntiation and terminal mitosis: chick sensory and ciliary neurons differentiate after terminal mitotsis of precursor cells, whereas sympathetic neurons continue to divide after differentiation. J. Neurosci 7, 3739-3748.[Abstract]

Rothman, T. B., Gershon, M. D. and Holtzer, H (1978). The relationship of cell division to the acquisition of adrenergic charactetristics by developing sympathetic ganglion cell precursors. Dev. Biol 65, 322-341.[Medline]

Rubin, E (1985). Development of the rat superior cervical ganglion: Ganglion cell maturation. J. Neurosci 5, 673-684.[Abstract]

Rubin, E (1985). Development of the rat superior cervical ganglion: Initial stages of synapse formation. J. Neurosci 5, 697-704.[Abstract]

Saadat, S., Sendtner, M. and Rohrer, H (1989). Ciliary neurotrophic factor induces cholinergic differentiation of rat sympathetic neurons in culture. J. Cell Biol 108, 1807-1816.[Abstract/Free Full Text]

Sanes, J. R., Rubenstein, J. L. R. and Nicholas, J.-F (1986). Use of a recombinant retrovirus to study post-implantation cell lineage in mouse embryos. EMBO J 5, 3133-3142.[Medline]

Shadiack, A. M., Hart, R. P., Carlson, C. D. and Jonakait, G. M (1993). Interleukin-1 induces substance P in sympathetic ganglia through the induction of Leukemia Inhibitory Factor (LIF). J. Neurosci 13, 2601-2609.[Abstract]

Sieber-Blum, M. and Cohen, A. M (1980). Clonal analysis of quail neural crest cells. They are pluripotent and differentiate in vitro in the absence of non-crest cells. Dev. Biol 80, 96-106.[Medline]

Stemple, D. L. and Anderson, D. J (1992). Isolation of a stem cell for neurons and glia from the mammalian neural crest. Cell 71, 973-985.[Medline]

Stofer, W. D. and Horn, J. P (1990). Expression of Neuropeptide-Y-like immunoreactivity begins after adrenergic differentiation and ganglionic synaptogenesis in developing bullfrog sympathetic neurons. J. Neurosci 10, 3305-3312.[Abstract]

Stofer, W. D. and Horn, J. P (1993). Neurogenesis and differentiation of sympathetic B and C cells in the bullfrog tadpole. J. Neurosci 13, 801-807.[Abstract]

Temple, S and Raff, M. C (1986). Clonal analysis of oligodencrocyte development in culture: evidence for a developmental clock that counts cell divisions. Cell 44, 773-779.[Medline]

Turner, D. L. and Cepko, C. L (1987). A common progenitor for neurons and glia persists in rat retina late in development. Nature 328, 131-136.[Medline]

Turner, D. L., Snyder, E. Y. and Cepko, C. L (1990). Lineage independent determination of cell type in the embryonic mouse retina. Neuron 4, 833-845.[Medline]

Uddman, R., Edvinnson, L., Hakanson, R., Owman, C. and Sundler,F (1982). Immunohistochemical demonstration of APP (Avian pancreatic polypeptide) immunoreactive nerve fibres around cerebral blood vessels. Brain Res. Bull 9, 715-718.[Medline]

Vandenbergh, D. J., Mori, N. and Anderson, D. J (1991). Co-expression of multiple neurotransmitter enzyme genes in normal and immortalized sympathoadrenal progenitor cells. Dev. Biol 148, 10-22.[Medline]

Walsh, C. and Cepko, C. L (1992). Widespread dispersion of neuronal clones across functional regions of the cerebral cortex. Science 255, 434-439.[Abstract/Free Full Text]

Weston, J. A (1963). A Radioautographic analysis of the migration and localization of trunk neural crest cells in the chick. Dev. Biol 6, 279-310.

Williams, B. P., Read, J. and Price, J (1991). The generation of neurons and oligodendrocytes from a common precursor cell. Neuron 7, 685-693.[Medline]




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