Extracellular modulating factors and the control of intraocular neovascularization: an overview.
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[1] T. Ishibashi,et al. Pathogenesis of laser-induced choroidal subretinal neovascularization. , 1990, Investigative ophthalmology & visual science.
[2] M. Uyama,et al. [A role of the retinal pigment epithelium in the involution of subretinal neovascularization]. , 1990, Nippon Ganka Gakkai zasshi.
[3] Y. Courtois,et al. Specific fixation of bovine brain and retinal acidic and basic fibroblast growth factors to mouse embryonic eye basement membranes. , 1987, Experimental cell research.
[4] N. Ling,et al. Multiple influences of a heparin-binding growth factor on neuronal development , 1987, The Journal of cell biology.
[5] J. Fiddes,et al. Capillary endothelial cells express basic fibroblast growth factor, a mitogen that promotes their own growth , 1987, Nature.
[6] S. Ryan,et al. The role of retinal pigment epithelium in the involution of subretinal neovascularization. , 1986, Investigative ophthalmology & visual science.
[7] S. Schwartz,et al. Inhibition of endothelial regeneration by type-beta transforming growth factor from platelets. , 1986, Science.
[8] P. Henkind,et al. Ultrastructure of Bruch's membrane after krypton laser photocoagulation. I. Breakdown of Bruch's membrane. , 1986, Archives of ophthalmology.
[9] W. Heriot,et al. Ultrastructure of Bruch's membrane after krypton laser photocoagulation. II. Repair of Bruch's membrane and the role of macrophages. , 1986, Archives of ophthalmology.
[10] W. Heriot,et al. Cellular processes causing defects in Bruch's membrane following krypton laser photocoagulation. , 1986, Ophthalmology.
[11] J. Fiddes,et al. Nucleotide sequence of a bovine clone encoding the angiogenic protein, basic fibroblast growth factor. , 1986, Science.
[12] S. O’Brien,et al. Human endothelial cell growth factor: cloning, nucleotide sequence, and chromosome localization. , 1986, Science.
[13] M. Sporn,et al. Peptide growth factors and inflammation, tissue repair, and cancer. , 1986, The Journal of clinical investigation.
[14] D. Barritault,et al. Evidence and characterization of the receptor to eye-derived growth factor I, the retinal form of basic fibroblast growth factor, on bovine epithelial lens cells. , 1986, Proceedings of the National Academy of Sciences of the United States of America.
[15] B. Olwin,et al. Identification of the fibroblast growth factor receptor of Swiss 3T3 cells and mouse skeletal muscle myoblasts. , 1986, Biochemistry.
[16] R. Derynck,et al. Transforming growth factor-alpha: a more potent angiogenic mediator than epidermal growth factor. , 1986, Science.
[17] M. Sporn,et al. Transforming growth factor type beta: rapid induction of fibrosis and angiogenesis in vivo and stimulation of collagen formation in vitro. , 1986, Proceedings of the National Academy of Sciences of the United States of America.
[18] W. Birchmeier,et al. Transforming growth factor-beta inhibits endothelial cell proliferation. , 1986, Biochemical and biophysical research communications.
[19] M. Klagsbrun,et al. Human tumor cells synthesize an endothelial cell growth factor that is structurally related to basic fibroblast growth factor. , 1986, Proceedings of the National Academy of Sciences of the United States of America.
[20] P. Campochiaro,et al. Endothelial cells release a chemoattractant for retinal pigment epithelial cells in vitro. , 1985, Archives of ophthalmology.
[21] P. Campochiaro,et al. Retinal pigment epithelial cells release an inhibitor of neovascularization. , 1985, Archives of ophthalmology.
[22] J. W. Moore,et al. Comparison of the neovascular effects of stimulated macrophages and neutrophils in autologous rabbit corneas. , 1985, The American journal of pathology.
[23] S. Ryan,et al. Correlation of choroidal subretinal neovascularization with fluorescein angiography. , 1985, American journal of ophthalmology.
[24] Y. Courtois,et al. Bovine retina contains three growth factor activities with different affinity to heparin: eye derived growth factor I, II, III. , 1985, Biochimie.
[25] R. Lobb,et al. Purification of two distinct growth factors from bovine neural tissue by heparin affinity chromatography. , 1984, Biochemistry.
[26] W. Heriot,et al. Choroidal neovascularization can digest Bruch's membrane. A prior break is not essential. , 1984, Ophthalmology.
[27] D. Gospodarowicz,et al. Isolation of brain fibroblast growth factor by heparin-Sepharose affinity chromatography: identity with pituitary fibroblast growth factor. , 1984, Proceedings of the National Academy of Sciences of the United States of America.
[28] M. Klagsbrun,et al. Endothelial cell mitogens derived from retina and hypothalamus: biochemical and biological similarities , 1984, The Journal of cell biology.
[29] A. Schreiber,et al. Heparin binds endothelial cell growth factor, the principal endothelial cell mitogen in bovine brain. , 1984, Science.
[30] J. Folkman,et al. Heparin affinity: purification of a tumor-derived capillary endothelial cell growth factor. , 1984, Science.
[31] R. Langer,et al. Angiogenesis inhibition and tumor regression caused by heparin or a heparin fragment in the presence of cortisone. , 1983, Science.
[32] J. Folkman,et al. Mast cell heparin stimulates migration of capillary endothelial cells in vitro , 1980, The Journal of experimental medicine.
[33] A. Patz,et al. Demonstration of vasoproliferative activity from mammalian retina , 1980, The Journal of cell biology.
[34] M. Sporn,et al. Type beta transforming growth factor: a bifunctional regulator of cellular growth. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[35] M. Sporn,et al. Transforming growth factors. , 1985, Cancer surveys.
[36] K. Thomas,et al. Purification and characterization of acidic fibroblast growth factor from bovine brain. , 1984, Proceedings of the National Academy of Sciences of the United States of America.
[37] Ic. Michaelson,et al. The mode of development of the vascular system of the retina, with some observations on its significance for certain retinal diseases , 1948 .