Mature Astrocytes Transform into Transitional Radial Glia within Adult Mouse Neocortex That Supports Directed Migration of Transplanted Immature Neurons
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[1] J. D. Macklis,et al. Cortical Interneurons Upregulate Neurotrophinsin Vivoin Response to Targeted Apoptotic Degeneration of Neighboring Pyramidal Neurons , 1998, Experimental Neurology.
[2] Stacey P. Memberg,et al. Regeneration of adult axons in white matter tracts of the central nervous system , 1997, Nature.
[3] S. K. Malhotra,et al. Reactive astrocytes: cellular and molecular cues to biological function , 1997, Trends in Neurosciences.
[4] A. Björklund,et al. Immortalized neural progenitor cells for CNS gene transfer and repair , 1997, Trends in Neurosciences.
[5] J. D. Macklis,et al. Multipotent neural precursors can differentiate toward replacement of neurons undergoing targeted apoptotic degeneration in adult mouse neocortex. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[6] J. Silver,et al. Glial cell extracellular matrix: boundaries for axon growth in development and regeneration , 1997, Cell and Tissue Research.
[7] T. Deacon,et al. Neural transplantation studies reveal the brain's capacity for continuous reconstruction , 1997, Trends in Neurosciences.
[8] K. Hunter-Schaedle,et al. Radial glial cell development and transformation are disturbed in reeler forebrain. , 1997, Journal of neurobiology.
[9] C. Sotelo,et al. Cajal-Retzius Cells Regulate the Radial Glia Phenotype in the Adult and Developing Cerebellum and Alter Granule Cell Migration , 1997, Neuron.
[10] D. Steindler,et al. Astrocytes and extracellular matrix following intracerebral transplantation of embryonic ventral mesencephalon or lateral ganglionic eminence , 1996, Neuroscience.
[11] J. Silver,et al. A POTENT INHIBITOR OF NEURITE OUTGROWTH THAT PREDOMINATES IN THE EXTRACELLULAR MATRIX OF REACTIVE ASTROCYTES , 1996, International Journal of Developmental Neuroscience.
[12] M. Chesselet,et al. Cortical lesions induce an increase in cell number and PSA‐NCAM expression in the subventricular zone of adult rats , 1996, The Journal of comparative neurology.
[13] J. D. Macklis,et al. Embryonic Neurons Transplanted to Regions of Targeted Photolytic Cell Death in Adult Mouse Somatosensory Cortex Re-form Specific Callosal Projections , 1996, Experimental Neurology.
[14] J. Flax,et al. Expression of human β–hexosaminidase α–subunit gene (the gene defect of Tay–Sachs disease) in mouse brains upon engraftment of transduced progenitor cells , 1996, Nature Medicine.
[15] Arturo Alvarez-Buylla,et al. Chain Migration of Neuronal Precursors , 1996, Science.
[16] C. Sotelo,et al. Molecular heterogeneity of progenitors and radial migration in the developing cerebral cortex revealed by transgene expression. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[17] D. Bredesen. Neural apoptosis , 1995, Annals of neurology.
[18] Jd Macklis,et al. Targeted neocortical cell death in adult mice guides migration and differentiation of transplanted embryonic neurons , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[19] S. Mcconnell,et al. Strategies for the generation of neuronal diversity in the developing central nervous system , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[20] F. Gage,et al. Regeneration in the adult mammalian CNS: guided by development , 1995, Current Opinion in Neurobiology.
[21] S. Mcconnell,et al. Tangential migration of neurons in the developing cerebral cortex. , 1995, Development.
[22] J. E. Vaughn,et al. Commissural fibers may guide cholinergic neuronal migration in developing rat cervical spinal cord , 1995, The Journal of comparative neurology.
[23] E. Snyder,et al. Neural progenitor cell engraftment corrects lysosomal storage throughout the MRS VII mouse brain , 1995, Nature.
[24] M. Hatten,et al. Radial glial cell transformation to astrocytes is bidirectional: regulation by a diffusible factor in embryonic forebrain. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[25] P. Levitt,et al. Age-dependent specification of the corticocortical connections of cerebral grafts , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[26] J. Zimmer,et al. Fetal Neocortical Transplants Grafted into Neocortical Lesion Cavities Made in Newborn Rats: An Analysis of Transplant Integration with the Host Brain , 1995, Cell transplantation.
[27] P. Rakic,et al. Recognition, adhesion, transmembrane signaling and cell motility in guided neuronal migration , 1994, Current Opinion in Neurobiology.
[28] J. D. Macklis,et al. Apoptotic Mechanisms in Targeted Neuronal Cell Death by Chromophore-Activated Photolysis , 1994, Experimental Neurology.
[29] C. Lois,et al. Long-distance neuronal migration in the adult mammalian brain. , 1994, Science.
[30] F. Gage,et al. Intracerebral transplantation: basic and clinical applications to the neostriatum , 1994, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[31] A. Messing,et al. GFAP promoter directs astrocyte-specific expression in transgenic mice , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[32] C. Sotelo,et al. Molecular plasticity of adult Bergmann fibers is associated with radial migration of grafted Purkinje cells , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[33] D. Ashley,et al. A novel approach to the measurement of different in vitro leukaemic cell growth parameters: the use of PKH GL fluorescent probes. , 1993, Leukemia research.
[34] Jd Macklis. Transplanted neocortical neurons migrate selectively into regions of neuronal degeneration produced by chromophore-targeted laser photolysis , 1993, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[35] C. Sotelo,et al. Partial reconstruction of the adult Lurcher cerebellar circuitry by neural grafting , 1993, Neuroscience.
[36] J. E. Vaughn,et al. Embryonic development of rat sympathetic preganglionic neurons: Possible migratory substrates , 1993, The Journal of comparative neurology.
[37] M. Hatten,et al. The role of migration in central nervous system neuronal development , 1993, Current Opinion in Neurobiology.
[38] S. Mcconnell,et al. Diverse migratory pathways in the developing cerebral cortex. , 1992, Science.
[39] A. Björklund. Dopaminergic transplants in experimental parkinsonism: cellular mechanisms of graft-induced functional recovery , 1992, Current Opinion in Neurobiology.
[40] J. Bolz,et al. Formation and preservation of cortical layers in slice cultures. , 1992, Journal of neurobiology.
[41] C. Cepko,et al. Multipotent neural cell lines can engraft and participate in development of mouse cerebellum , 1992, Cell.
[42] M. Hatten,et al. Molecular Mechanisms of Glial‐Guided Neuronal Migration , 1991, Annals of the New York Academy of Sciences.
[43] J. A. Markham,et al. Migration patterns of sympathetic preganglionic neurons in embryonic rat spinal cord. , 1991, Journal of neurobiology.
[44] M. Ralph,et al. Transplantation: a new tool in the analysis of the mammalian hypothalamic circadian pacemaker , 1991, Trends in Neurosciences.
[45] P. Tresco,et al. Transplantation of polymer encapsulated neurotransmitter secreting cells: effect of the encapsulation technique. , 1991, Journal of biomechanical engineering.
[46] E. Neafsey,et al. Heterotopic neocortical transplants. An anatomical and electrophysiological analysis of host projections to occipital cortical grafts placed into sensorimotor cortical lesions made in newborn rats. , 1991, Brain research. Developmental brain research.
[47] M. Edwards,et al. Organization of radial glia and related cells in the developing murine CNS. An analysis based upon a new monoclonal antibody marker , 1990, Neuroscience.
[48] Tobias Bonhoeffer,et al. Formation of target-specific neuronal projections in organotypic slice cultures from rat visual cortex , 1990, Nature.
[49] J. D. Macklis,et al. Latex nanosphere delivery system (LNDS): novel nanometer-sized carriers of fluorescent dyes and active agents selectively target neuronal subpopulations via uptake and retrograde transport , 1990, Brain Research.
[50] M. Hatten,et al. Central nervous system neurons migrate on astroglial fibers from heterotypic brain regions in vitro. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[51] M. Hatten,et al. Riding the glial monorail: A common mechanism for glialguided neuronal migration in different regions of the developing mammalian brain , 1990, Trends in Neurosciences.
[52] U. Gasser,et al. Neuron-glia interactions of rat hippocampal cells in vitro: glial- guided neuronal migration and neuronal regulation of glial differentiation , 1990, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[53] R. Lund,et al. Timing and patterns of astrocyte migration from xenogeneic transplants of the cortex and corpus callosum , 1990, The Journal of comparative neurology.
[54] C D Marsden,et al. Grafts of fetal dopamine neurons survive and improve motor function in Parkinson's disease. , 1990, Science.
[55] Miyuki Yamamoto,et al. Cortical radial glia: identification in tissue culture and evidence for their transformation to astrocytes , 1990, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[56] R. Penn,et al. Adrenal medullary transplant to the striatum of patients with advanced Parkinson's disease , 1990, Neurology.
[57] M. G. Honig,et al. Dil and DiO: versatile fluorescent dyes for neuronal labelling and pathway tracing , 1989, Trends in Neurosciences.
[58] C. Hull,et al. Neuronal and glial elements of fetal neostriatal grafts in the adult neostriatum , 1989, Neuroscience.
[59] T. Voigt. Development of glial cells in the cerebral wall of ferrets: Direct tracing of their transformation from radial glia into astrocytes , 1989, The Journal of comparative neurology.
[60] V S Caviness,et al. Identification of radial glial cells within the developing murine central nervous system: studies based upon a new immunohistochemical marker. , 1988, Brain research. Developmental brain research.
[61] Fernando Nottebohm,et al. Migration of young neurons in adult avian brain , 1988, Nature.
[62] S. Mcconnell,et al. Fates of visual cortical neurons in the ferret after isochronic and heterochronic transplantation , 1988, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[63] C. Sotelo,et al. Embryonic and adult neurons interact to allow Purkinje cell replacement in mutant cerebellum , 1987, Nature.
[64] J. de Vellis,et al. Transition between immature radial glia and mature astrocytes studied with a monoclonal antibody to vimentin. , 1984, Brain research.
[65] M. Hatten,et al. Two forms of cerebellar glial cells interact differently with neurons in vitro , 1984, The Journal of cell biology.
[66] A. Bignami,et al. Astrocyte-specific protein and radial glia in the cerebral cortex of newborn rat , 1974, Nature.
[67] P. Rakić. Mode of cell migration to the superficial layers of fetal monkey neocortex , 1972, The Journal of comparative neurology.
[68] P. Rakić. Guidance of neurons migrating to the fetal monkey neocortex. , 1971, Brain research.
[69] J. Vanderhaeghen,et al. An acidic protein isolated from fibrous astrocytes. , 1971, Brain research.
[70] C. D'amato,et al. Cell migrations to the isocortex in the rat , 1968, The Anatomical record.
[71] R. Sidman,et al. Autoradiographic Study of Cell Migration during Histogenesis of Cerebral Cortex in the Mouse , 1961, Nature.
[72] J. Flax,et al. Expression of human beta-hexosaminidase alpha-subunit gene (the gene defect of Tay-Sachs disease) in mouse brains upon engraftment of transduced progenitor cells. , 1996, Nature medicine.
[73] J. Silver,et al. Proteoglycans and other repulsive molecules in glial boundaries during development and regeneration of the nervous system. , 1996, Progress in brain research.
[74] F. Gage,et al. Isolation, characterization, and use of stem cells from the CNS. , 1995, Annual review of neuroscience.
[75] D. Steindler. Glial boundaries in the developing nervous system. , 1993, Annual review of neuroscience.
[76] V. Caviness,et al. Ontogeny of radial and other astroglial cells in murine cerebral cortex , 1991, Glia.
[77] Manuel F. Gonzalez,et al. Motor Deficits Are Produced By Removing Some Cortical Transplants Grafted Into Injured Sensorimotor Cortex of Neonatal Rats , 1991, Journal of neural transplantation & plasticity.
[78] P. Rakic,et al. Glial cell lineage in the cerebral cortex: A review and synthesis , 1991, Glia.
[79] M. G. Honig,et al. Carbocyanine dyes. Novel markers for labelling neurons. , 1989, Trends in neurosciences.
[80] M. Waterfield. Migration and Differentiation of Cerebral Cortical Neurons After Transplantation into the Brains of Ferrets , 2022 .