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Beck, D. W., Vinters, H. V., Hart, M. N. and Cancilla, P. A (1984). Glial cells influence polarity of the blood-brain barrier. J. Neuropathol. Exp. Neurol 43, 219-224.[Medline]

Chan-Ling, T., Halasz, P. and Stone, J (1990). Development of retinal vasculature in the cat: processes and mechanisms. Curr. Eye Res 9, 459-478.[Medline]

Chan-Ling, T. and Stone, J (1991). Factors determining the migration of astrocytes into the developing retina: migration does not depend on intact axons or patent vessels. J. Comp. Neurol 303, 375-386.[Medline]

DeBault, L. E. and Cancilla, P. A (1980). Gamma-glutamyl transpeptidase in isolated brain endothelial cells: induction by glial cells in vitro. Science 207, 653-655.[Abstract/Free Full Text]

Engvall, E., Davis, G. E., Dickerson, K., Ruoslahti, E., Varon, S. and Manthorpe, M (1986). Mapping of domains in human laminin using monoclonal antibodies: localization of the neurite-promoting site. J. Cell Biol 103, 2457-2465.[Abstract/Free Full Text]

fFrench-Constant, D. and Hynes, R. O (1988). Patterns of fibronectin gene expression and splicing during cell migration in chicken embryos. Development 104, 369-382.[Abstract/Free Full Text]

fFrench-Constant, D., Van De Water, L., Dvorak, H. F. and Hynes, R. O (1989). Reappearance of an embryonic pattern of fibronectin splicing during wound healing in the adult rat. J. Cell Biol 1989, 903-914.

Furchgott, R. F. and Zawadski, J. V (1980). The obligatory role of endothelial cells in the relaxation of arterial smooth muscle by acetylcholine. Nature 288, 373-376.[Medline]

Gitlin, J. D. and D'Amore, P. A (1983). Culture of retinal capillary cells using selective growth media. Microvasc. Res 26, 74-80.[Medline]

Grant, D. S., Tashiro, K., Segui-Real, B., Yamada, Y., Martin, G. R. and Kleinman, H. K (1989). Two different laminin domains mediate the differentiation of human endothelial cells into capillary-like structures in vitro. Cell 58, 933-943.[Medline]

Hancock, M. B (1986). Two-color immunoperoxidase staining: visualization of anatomic relationships between immunoreactive neural elements. Am. J. Anat 175, 343-352.[Medline]

Herman, I. M. and D'Amore, P. A (1985). Microvascular pericytes contain muscle and non-muscle actins. J. Cell Biol 101, 43-52.[Abstract/Free Full Text]

Hill, W. D., Aria, M., Cohen, J. A. and Trojanowski, J. Q (1993). Neurofilament mRNA is reduced in Parkinson's disease substantia nigra pars compacta neurons. J. Comp. Neurol 329, 328-336.[Medline]

Hynes, R. O (1986). Fibronectins. Science 254, 42-51.

Hynes, R. O (1992). Integrins: versatility, modulation, and signaling in cell adhesion. Cell 69, 11-25.[Medline]

Hynes, R. O. and Yamada, K. M (1982). Fibronectin: multifunctional modular glycoprotein. J. Cell Biol 95, 369-377.[Free Full Text]

Janzer, R. C. and Raff, M. C (1987). Astrocytes induce blood-barrier properties in endothelial cells. Nature 325, 253-257.[Medline]

Jiang, B., Liou, G. and Caldwell, R. B (1993). Astrocytes modulate endothelial cell growth, differentiation, and fibronectin expression. Invest. Ophthalmol. Vis. Sci 34, 899-.

Kocher, O., Kennedy, S. P. and Madri, J. A (1990). Alternative splicing of endothelial cell fibronectin mRNA in the IIICS region. Am. J. Pathol 137, 1509-1523.[Abstract]

Kubota, Y., Kleinman, H. K., Martin, G. R. and Lawley, T. J (1988). Role of laminin and basement membrane in the morphological differentiation of human endothelial cells into capillary-like structures. J. Cell Biol 107, 1589-1598.[Abstract/Free Full Text]

Laterra, J., Guerin, C. and Goldstein, G. W (1990). Astrocytes induce neural microvascular endothelial cells to form capillary-like structures in vitro. J. Cell. Physiol 144, 204-215.[Medline]

Ling, T. and Stone, J (1988). The development of astrocytes in the cat retina: evidence of migration from the optic nerve. Dev. Brain Res 44, 73-85.[Medline]

Ling, T., Mitrofanis, J. and Stone, J (1989). Origin of retinal astrocytes in the rat: evidence of migration from the optic nerve. J. Comp. Neurol 286, 345-352.[Medline]

Murakami, D., Sesma, M. A. and Rowe, M. H (1982). Characteristics of nasal and temporal retina in Siamese and normally pigmented cats: Ganglion cell composition, axon trajectory and laterality of projection. Brain, Behav. Evol 21, 67-113.[Medline]

Orlidge, A. and D'Amore, P. A (1987). Inhibition of capillary endothelial cell growth by pericytes and smooth muscle cells. J. Cell Biol 105, 1455-1463.[Abstract/Free Full Text]

Pagani, F., Zagato, L., Vergani, C., Casari, G., Sidoli, A. and Baralle, F. E (1991). Tissue-specific splicing pattern of fibronectin messenger RNA precursor during development and aging in rat. J. Cell Biol 113, 1223-1229.[Abstract/Free Full Text]

Price, J. and Hynes, R. O (1985). Astrocytes in culture synthesize and secrete a variant form of fibronectin. J. Neurosci 5, 2205-2211.[Abstract]

Rakic, P (1981). Neuronal-glia interaction during brain development. Trends Neurosci 4, 184-.

Rapaport, D. H. and Stone, J (1984). The area centralis of the retina in the cat and other mammals: focal point for function and development of the visual system. Neuroscience 11, 289-301.[Medline]

Risau, W. and Lemmon, V (1988). Changes in the vascular extracellular matrix during embryonic vasculogenesis and angiogenesis. Dev. Biol 125, 441-450.[Medline]

Roque, R. S. and Caldwell, R. B (1990). Muller cell changes precede vascularization of the pigment epithelium in the dystrophic rat retina. Glia 3, 464-475.[Medline]

Schwarzbauer, J. E., Patel, R. S., Fonda, D. and Hynes, R. O (1987). Multiple sites of alternative splicing of the rat fibronectin gene transcript. EMBO J 6, 2573-2580.[Medline]

Schwarzbauer, J. E., Tamkun, J. W., Lemischka, I. R. and Hynes, R. O (1983). Three different fibronectin mRNAs arise by alternative splicing within the coding region. Cell 35, 421-431.[Medline]

Stone, J. and Dreher, Z (1987). Relationship between astrocytes, ganglion cells and vasculature of the retina. J. Comp. Neurol 225, 35-49.

Tao-Cheng, H.-H., Nagy, Z. and Brightman, M. W (1987). Tight junctions of brain endothelium in vitro are enhanced by astroglia. J. Neurosci 7, 3293-3299.[Abstract]

Watanabe, T. and Raff, M. C (1988). Retinal astrocytes are immigrants from the optic nerve. Nature 332, 834-837.[Medline]

Webster, M. J. and Rowe, M. H (1991). Disruption of developmental timing in the albino rat retina. J. Comp. Neurol 307, 460-474.[Medline]




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This Article
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