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Adamis, A. P., Shima, D. T., Tolentino, M. J., Gragoudas, E. S., Ferrara, N., Folkman, J., D'Amore, P. A. and Miller, J. W (1996). Inhibition of vascular endothelial growth factor prevents retinal ischemia-associated iris neovascularization in a nonhuman primate. Arch. Ophthalmol 114, 66-71.[Abstract/Free Full Text]

Ausprunk, D. H., Falterman, K. and Folkman, J (1978). The sequence of events in the Regression of corneal capillaries. Laboratory Investigation 38, 284-294.[Medline]

Azmi, T. I. and O'Shae, J. D (1984). Mechanism of deletion of endothelial cells during regression of the corpus luteum. Lab. Investigation 51, 206-217.[Medline]

Balazs, E. A., Toth, L. Z. and Ozanics, V (1980). Cytological studies on the developing vitreous as related to the hyaloid vessel system. Albrecht v. Graefes Arch. klin. exp. Ophthal 213, 71-85.[Medline]

Benjamin, L. E., Hemo, I. and Keshet, E (1998). A plasticity window for blood vessel remodelling is defined by pericyte coverage of the preformed endothelial network and is regulated by PDGF-B and VEGF. Development 125, 1591-8.[Abstract]

Carmeliet, P., Ferreira, V., Breier, G., Pollefeyt, S., Kieckens, L., Gertsenstein, M., Fahrig, M., Vandenhoeck, A., Harpal, K., Eberhardt, C., Declercq, C., Pawling, J., Moons, L., Collen, D., Risau, W. and Nagy, A (1996). Abnormal blood vessel development and lethality in embryos lacking a single VEGF allele. Nature 380, 435-9.[Medline]

Cohen, T., Gitay-Goren, H., Neufeld, G. and Levi, B. Z (1992). High levels of biologically active vascular endothelial growth factor (VEGF) are produced by the baculovirus expression system. Growth Factors 7, 131-8.[Medline]

Cousins, S. W., McCabe, M. M., Danielpour, D. and Streilein, J. W (1991). Identification of transforming growth factor-beta as an immunosuppressive factor in aqueous humor. Invest Ophthalmol. Visual Sci 32, 2201-11.[Abstract/Free Full Text]

de Vries, C., Escobedo, J. A., Ueno, H., Houck, K., Ferrara, N. and Williams, L. T (1992). The fms-like tyrosine kinase, a receptor for vascular endothelial growth factor. Science 255, 989-991.[Abstract/Free Full Text]

Diez-Roux, G. and Lang, R. A (1997). Macrophages induce apoptosis in normal cells in vivo. Development 124, 3633-3638.[Abstract]

Ferrara, N., Carver-Moore, K., Chen, H., Dowd, M., Lu, L., O'Shea, K. S., Powell-Braxton, L., Hillan, K. J. and Moore, M. W (1996). Heterozygous embryonic lethality induced by targeted inactivation of the VEGF gene. Nature 380, 439-442.[Medline]

Ferrara, N., Chen, H., Davis-Smyth, T., Gerber, H. P., Nguyen, T. N., Peers, D., Chisholm, V., Hillan, K. J. and Schwall, R. H (1998). Vascular endothelial growth factor is essential for corpus luteum angiogenesis. Nat. Med 4, 336-40.[Medline]

Ferrara, N. and Davis-Smyth, T (1997). The biology of vascular endothelial growth factor. Endocr. Rev 18, 4-25.[Abstract/Free Full Text]

Flavin, M. P., Coughlin, K. and Ho, L. T (1997). Soluble macrophage factors trigger apoptosis in cultured hippocampal neurons. Neuroscience 80, 437-48.[Medline]

Fong, G. H., Rossant, J., Gertsenstein, M. and Breitman, M. L (1995). Role of the Flt-1 receptor tyrosine kinase in regulating the assembly of vascular endothelium. Nature 376, 66-70.[Medline]

Gavrieli, Y., Sherman, Y. and Ben-Sasson, S. A (1992). Identification of programmed cell death in situ via specific labeling of nuclear DNA fragmentation. J. Cell. Biol 119, 493-501.[Abstract/Free Full Text]

Gerber, H. P., Dixit, V. and Ferrara, N (1998). Vascular endothelial growthfactor induces expression of the antiapoptotic proteins bcl-2 and A1 in vascular endothelial cells. J. Biol. Chem 273, 13313-6.[Abstract/Free Full Text]

Graeber, T. G., Osmanian, C., Jacks, T., Housman, D. E., Koch, C. J., Lowe, S. W. and Giaccia, A. J (1996). Hypoxia-mediated selection of cells with diminished apoptotic potential in solid tumours [see comments]. Nature 379, 88-91.[Medline]

Hallmann, R., Feinberg, R., Latker, C., Sasse, J. and Risau, W (1987). Regression of blood vessels precedes cartilage differentiation during chick limb development. Differentiation 34, 98-105.[Medline]

Harmey, J. H., Dimitriadis, E., Kay, E., Redmond, H. P. and Bouchier-Hayes, D (1998). Regulation of macrophage production of vascular endothelial growth factor (VEGF) by hypoxia and transforming growth factor beta-1. Ann. Surg. Oncol 5, 271-8.[Medline]

Hornblass, A (1971). Persistent PM and oxygen therapy in premature infants. Ann. Ophthalmol 3, 95-99.[Medline]

Hurle, J. M., Colvee, E. and Fernandez-Teran, M. A (1985). Vascular regression during the formation of the free digits in the avian limb bud: a comparative study in chick and duck embryos. J. Embryol. Exp. Morph 85, 239-250.[Medline]

Jack, R. L (1972). Regression of the hyaloid vascular system: An ultrastructural analysis. Am. J. Ophth 74, 261-272.[Medline]

Katoh, O., Tauchi, H., Kawaishi, K., Kimura, A. and Satow, Y (1995). Expression of the vascular endothelial growth factor (VEGF) receptor gene, KDR, in hematopoietic cells and inhibitory effect of VEGF on apoptotic cell death caused by ionizing radiation. Cancer Res 55, 5687-5692.[Abstract/Free Full Text]

Koch, C. J., Lord, E. M., Shapiro, I. M., Clyman, R. I. and Evans, S. M (1997). Imaging hypoxia and blood flow in normal tissues. Adv. Exp. Med. Biol 428, 585-93.[Medline]

Lang, R. A. and Bishop, M. J (1993). Macrophages are required for cell death and tissue remodeling in the developing mouse eye. Cell 74, 453-462.[Medline]

Lang, R. A., Lustig, M., Francois, F., Sellinger, M. and Plesken, H (1994). Apoptosis during macrophage-dependent tissue remodelling. Development 120, 3395-3403.[Abstract]

Malek, A.M., Gibbons, G.H., Dzau, V.J., and Izumo, S (1993). Fluid Shear Stress Differentially Modulates Expression of Genes Encoding Basic Fibroblast Growth Factor and Platelet-derived Growth Factor B Chain in Vascular Endothelium. J. Clin. Invest 92, 2013-2021.

Maloney, J. P., Silliman, C. C., Ambruso, D. R., Wang, J., Tuder, R. M. and Voelkel, N. F (1998). In vitro release of vascular endothelial growth factor during platelet aggregation. Am. J. Physiol 275, 1054-1061.

Mandriota, S. J., Menoud, P. A. and Pepper, M. S (1996). Transforming growth factor beta 1 down-regulates vascular endothelial growth factor receptor 2/flk-1 expression in vascular endothelial cells. J. Biol. Chem 271, 11500-5.[Abstract/Free Full Text]

Matsuo, N. and Smelser, G. K (1971). Electron microscopic studies on the PM: The fine structure of the white strands of the disappearing stage of this membrane. Invest. Ophthalmol 10, 1098-119.

Meeson, A., Palmer, M., Calfon, M. and Lang, R. A (1996). A relationship between flow and apoptosis during programmed capillary regression is revealed by vital analysis. Development 122, 3929-3938.[Abstract]

Melillo, G., Musso, T., Sica, A., Taylor, L. S., Cox, G. W. and Varesio, L (1995). A hypoxia-responsive element mediates a novel pathway of activation of the inducible nitric oxide synthase promoter. J. Exp. Med 182, 1683-93.[Abstract/Free Full Text]

Neufeld, G., Tessler, S., Gitay-Goren, H., Cohen, T. and Levi, B. Z (1994). Vascular endothelial growth factor and its receptors. Prog. Growth Factor Res 5, 89-97.[Medline]

Park, J. E., Keller, G. A. and Ferrara, N (1993). The vascular endothelial growth factor (VEGF) isoforms: differential deposition into the subepithelial extracellular matrix and bioactivity of extracellular matrix-bound VEGF. Mol. Biol. Cell 4, 1317-26.[Abstract]

Pepper, M. S., Vassalli, J. D., Orci, L. and Montesano, R (1993). Biphasic effect of transforming growth factor-beta 1 on in vitro angiogenesis. Exp. Cell Res 204, 356-63.[Medline]

Plate, K. H., Breier, G. and Risau, W (1994). Molecular mechanisms of developmental and tumor angiogenesis. Brain Pathol 4, 207-18.[Medline]

Poltorak, Z., Cohen, T., Sivan, R., Kandelis, Y., Spira, G., Vlodavsky, I., Keshet, E. and Neufeld, G (1997). VEGF145, a secreted vascular endothelial growth factor isoform that binds to extracellular matrix. J. Biol. Chem 272, 7151-8.[Abstract/Free Full Text]

Resnick, N., and Gimbrone, M.A (1995). Hemodynamic forces are complex regulators of endothelial gene expression. FASEB J 9, 874-882.[Abstract]

Shalaby, F., Rossant, J., Yamaguchi, T. P., Gertsenstein, M., Wu, X. F., Breitman, M. L. and Schuh, A. C (1995). Failure of blood-island formation and vasculogenesis in Flk-1-deficient mice. Nature 376, 62-66.[Medline]

Shibuya, M., Yamaguchi, S., Yamane, A., Ikeda, T., Tojo, A., Matsushime, H. and Sato, M (1990). Nucleotide sequence and expression of a novel human receptor-type tyrosine kinase gene (flt) closely related to the fms family. Oncogene 5, 519-24.[Medline]

Song, D. L., Chalepakis, G., Gruss, P. and Joyner, A. L (1996). Two Pax-binding sites are required for early embryonic brain expression of an Engrailed-2 transgene. Development 122, 627-635.[Abstract]

Spyridopoulos, I., Brogi, E., Kearney, M., Sullivan, A. B., Cetrulo, C., Isner, J. M. and Losordo, D. W (1997). Vascular endothelial growth factor inhibits endothelial cell apoptosis induced by tumor necrosis factor-alpha: balance between growth and death signals. J. Mol. Cell Cardiol 29, 1321-30.[Medline]

Szirmai, J. A. and Balazs, E. A (1958). Studies on the structure of the vitreous. III. Cells in the cortical layer. Arch. Ophthalmol 59, 34-48.

Tessler, S., Rockwell, P., Hicklin, D., Cohen, T., Levi, B. Z., Witte, L., Lemischka, I. R. and Neufeld, G (1994). Heparin modulates the interaction of VEGF165 with soluble and cell associated flk-1 receptors. J. Biol. Chem 269, 12456-61.[Abstract/Free Full Text]

Watanabe, Y. and Dvorak, H. F (1997). Vascular permeability factor/vascular endothelial growth factor inhibits anchorage-disruption-induced apoptosis in microvessel endothelial cells by inducing scaffold formation. Exp. Cell Res 233, 340-349.[Medline]

Wilhelm, J., Sojkova, J. and Herget, J (1996). Production of hydrogen peroxide by alveolar macrophages from rats exposed to subacute and chronic hypoxia. Physiol Res 45, 185-91.[Medline]

Wyllie, A. H., Kerr, J. F. R. and Currie, A. R (1980). Cell death: The significance of apoptosis. Int. Rev. Cytol 68, 251-305.[Medline]

Xiong, M., Elson, G., Legarda, D. and Leibovich, S. J (1998). Production of vascular endothelial growth factor by murine macrophages: regulation by hypoxia, lactate, and the inducible nitric oxide synthase pathway. Am. J. Pathol 153, 587-98.[Abstract/Free Full Text]

Yanagawa, T., Matsuo, T. and Matsuo, N (1998). Aqueous vascular endothelial growth factor and basic fibroblast growth factor decrease during regression of rabbit PM. Jpn J. Ophthalmol 42, 157-161.[Medline]


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