Abe, N. et al., “Identification of a Novel Collagen Chain Represented by Extensive Interruptions in the Triple-Helical Region”, Biochem. and Biophys. Resch. Comm., vol. 196, No. 2, pp. 576-582 (1993). |
Algire, G.H. et al., “Vascular reactions of normal and malignant tumors in vivo. I. Vascular reactions of mice to wounds and to normal and neoplastic transplants”, J. Natl. Canc. Inst., vol. 6, pp. 73-85 (1945). |
Angiolillo, A.l. et al., “Human interferon-inducible Protein 10 is a potent inhibitor of angiogenesis in vivo”, J. Exp. Med. , vol. 182, pp. 155-162 (1995). |
Brem, H. et al., “Interstitial chemotherapy with drug polymer implants for the treatment of recurrent gliomas”, J. Neurosurg., vol. 74, pp. 441-446 (1991). |
Brockway, W. J. et al., “Measurement of the Binding of Antifibrinolytic Amino Acids to Various Plasminogens”, Arch. Biochem. Biophys., vol. 151, pp. 194-199 (1972). |
Browne, M.J. et al., “Expression of Recombinant Human Plasminogen and Aglycoplasminogen in HeLa Cells”, Fibrinolysis, vol. 5, pp. 257-260 (1991). |
Cao, Y. et al., “gro-β, α-C-X-C- Chemokine, Is an Angiogenesis Inhibitor That Suppresses the Growth of Lewis Lung Carcinoma in Mice”, J. Esp. Med., vol. 182, pp. 2069-2077 (1995). |
Chen, C. et al., “A Strategy to Discover Circulating Angiogenesis Inhibitors Generated by Human Tumors”, Canc Resch., vol. 55, pp. 4230-4233 (1995). |
Clapp, C. et al., “The 16-kilodalton N-terminal fragment of human prolactin is a potent inhibitor of angiogenesis”, Endocrinology, vol. 133, pp. 1292-1299 (1993). |
Cleary, S. Mulkerrin et al., “Purification and Characterization of Tissue Plasminogen Activator Kringle-2 Domain Expressed in Escherichia coli”, Biochem., vol. 28, pp. 1884-1891 (1989). |
Dameron, K.M. et al., “Control of angiogenesis in fibroblasts by p53 regulation of thrombospondin-1”, Science, vol. 265, pp. 1582-1584 (1994). |
Folkman, J., “Tumor angiogenesis and tissue factor”, Nature Med. vol. 2, pp. 167-168 (1996). |
Folkman, J., “What is the Evidence that Tumors are Angiogenesis Dependent?”, J. Natl Canc Inst., vol. 82, pp. 4-6 (1990). |
Folkman, J., “Angiogenesis in cancer, vascular, rheumatoid and other disease”, Nature Medicine, vol. 1, No. 1, pp. 27-31 (1995). |
Folkman, J., “Long-term culture of capillary endothelial cells”, Proc. Natl. Acad. Sci. USA 76, pp. 5217-5221 (1979). |
Folkman, J. et al., “Induction of angiogenesis during the transition from hyperplasia to neoplasia”, Nature, vol. 339, pp. 58-61 (1989). |
Folkman, J. et al. , “Tumor Behavior in Isolated Perfused Organs In Vitro Growth and Metastases of Biopsy Material in Rabbit Thyroid and Canine Intestinal Segment”, Annals of Surgery, vol. 164, No. 3, pp. 491-501 (1996). |
Folkman, J. , “Angiogenesis and Its Inhibitors”, Important Advances in Oncology, J.B. Lippincott Company, pp. 42-62 (1985). |
Folkman, J., “Tumor Angiogenesis Therapeutic Implications”, NE J. of Med., No. 18, pp. 1182-1186 (1971). |
Knighton, D. et al., “Avascular and Vascular Phases of Tumor Growth in the Chick Embryo”, Br. J. Cancer, vol. 35, pp. 347-356 (1977). |
Lein, W. M. et al., “The blood supply of experimental liver metastases. II. A Microcirculatory study of the normal and tumor vessels of the liver with the use of perfused silicone rubber”, Surgery, vol. 68, No. 2, pp. 334-340 (1970). |
Lerch et al., “Localization of Individual Lysine-Binding Regions in Human Plasminogen and Investigations on Their Complex-Forming Properties”, European Journal of Biochemistry, vol. 107, No. 1, pp. 7-13 (1980). |
Lokker, N.A. et al., “Mutational analysis and molecular modeling of the N-terminal kringle-containing domain of hepatocyte growth gactor identifies amino acid side chains important for interaction with the c-met receptor”, Prot. Engin., vol. 7, pp. 895-903 (1994). |
Maione, T.E. et al., “Inhibition of Angiogenesis by Recombinant Human Platelet Factor-4 and Related Peptiddes”, Science, vol. 247, pp. 77-79 (1990). |
Marti, D. et al., “Expression, purification and characterization of the recombinant kringle 2 and kringle 3 domains of human plasminogen and analysis of their binding affinity for ω-aminocarboxylic acids”, Eur. J. Biochem., vol. 219, pp. 455-462 (1994). |
McLean, J.W. et al., “cDNA sequence of human apolipoprotein(a) is homologous to plasminogen”, Nature, vol. 330, pp. 132-137 (1987). |
Menhart, N. et al., “Construction, Expression, and Purification of Recombinant Kringle 1 of Human Plasminogen and Analysis of Its Interaction with ω-Amino Acids”, Biochem., vol. 30, pp. 1948-1957 (1991). |
Millauer, B. et al., “Glioblastoma growth inhibited in vivo by a dominant-negative Flk-1 mutant”, Nature, vol. 367, pp. 576-579 (1994). |
Moses, M.A. et al., “Identification of an Inhibitor of Neovascularization from Cartilage”, Science, vol. 248 (1990). |
Muragaki, Y. et al., “Mouse col 18a1 is expressed in a tissue-specific manner as three alternative variants and is localized in basement membrane zones”, Proc. Natl. Acad Sci. USA, vol. 92, pp. 8763-8767 (1995). |
Muthukkaruppan, VR., “Angiogenesis in the Mouse Cornea”, Science, vol. 205, pp. 1416-1418 (1979). |
Nelson, J. A. et al., “Murine epidermal growth factor (EGF) fragment (33-42) inhibits both EGF- and laminin-dependent endothelial cell motility and aniogenesis”, Canc. Resch., vol. 55, pp. 3772-3776 (1995). |
Nguyen, M. et al., “Quantitation of Angiogenesis and Antiangiogenesis in the Chick Embryo Chorioallantoic Membrane”, Microvascular Research, vol. 47, pp. 31-49 (1994). |
Nguyen, M. et al., “Elevated Levels of the Angiogenic Peptide Basic Fibroblast Growth Factor in Urine of Bladder Cancer Patients”, J. of Nat. Canc. Inst., vol. 85, No. 3, pp. 241-242 (1993). |
O'Reilly et al., “Endogenous Inhibitors of Angiogenesis”, Proc. Am. Assoc. Canc. Resch., vol. 37, p. 669 (1996). |
O'Reilly et al., “Angiostatin induces and sustains dormancy of human primary tumors in mice”, Nature Medicine, vol. 2, No. 6, pp. 689-692 (1996). |
O'Reilly et al., “The suppression of Tumor Metastases by a Primary Tumor”, Surgical Forum, vol. XLIV, pp. 474-476 (1993). |
O'Reilly et al., “Angiostatin A Novel Angiogenesis Inhibitor that Mediates the Suppression of Metastases by a Lewis Lung Carcinoma”, Cell, vol. 79, pp. 315-328 (1994). |
O'Reilly et al., “Angiostatin: A Circulating Endothelial Cell Inhibitor That Suppresses Angiogenesis and Tumor Growth”, Cold Spring Harbor Symposia on Quantitative Biology, vol. LIX, pp. 471-482 (1994). |
Obeso, J. et al., “Methods in Laboratory Investigation/A Hemangioendothelioma-Derived Cell Line Its Use as a Model for the Study of Endothelial Cell Biology”, Laboratory Investigation, vol. 63, No. 2, p. 159 (1990). |
Oh, S.K. et al., “Isolation and sequencing of cDNAs for proteins with multiple domains of Gly-Xaa-Yaa repeats identify a distinct family of collagenous proteins”, Proc. Natl. Acad. Sci. USA, vol. 91, pp. 4229-4233 (1994). |
Oh, S.P., “Cloning of cDNA and Genomic DNA Encoding Human Type VIII Collagen and Localization of the α1(XVIII) Collagen Gene to Mouse Chromosome 10 and Human Chromosome 21”, Genomics, vol. 19, pp. 494-499 (1994). |
Parangi, S. et al, “Antiangiogenic therapy of transgenic mice impairs de novo tumor growth”, Proc. Natl. Acad. Sci. USA, vol. 93, pp. 2002-2007 (1996). |
Passaniti, A. et al., “Methods in Laboratory Investigation/A Simple, Quantitative Method for Assessing Angiogenesis and Antiangiogenic Agents Using Reconstituted Basement Membrane, Heparin, and Fibroblast Growth Factor”, Lab. Invest., vol. 67, No. 4, pp. 519-528 (1992). |
Ponting et al., “Plasminogen: a structural review”, Blood Coagulation and Fibrinolysis, vol. 3, pp. 605-614 (1992). |
Powell, J. R. et al., “Amino Acid Sequence Analysis of the Asparagine-288 Region of the Carbohydrate Variants of Human Plasminogen”, Biochem,. vol. 22, pp. 923-927 (1983) |
Rastinejad, F. et al., “Regulation of the activity of a new inhibitor of angiogenesis by a cancer suppressor gene”, Cell, vol. 56, pp. 345-355 (1989). |
Rehn, M. et al., “α1(XVIII), a collagen chain with frequent interruptions in the collagenous sequence, a distinct tissue distribution, and homology with type XV collagen”, Proc. Natl. Acad. Sci. USA, vol. 91, pp. 4234-4238 (1994). |
Rehn, M. et al., “Identification of three N-terminal ends of type XVIII collagen chains and tissue-specific differences in the expression of the corresponding transcipts”, J. Biol. Chem., vol. 270, pp. 5705-4711 (1995). |
Robbins, K.C., “The Plasminogen-Plasmin Enzyme System”, Fibrinolysis, pp. 340-357 (1987). |
Sage, E.H. et al., “Inhibition of Endothelial Cell Proliferation by SPARC is Mediated through a Ca2+-Binding EF-Hand Sequence”, J. Cell. Biochem., vol. 57, pp. 127-140 (1995). |
Sakamato, N. et al., “Inhibition of angiogenesis and tumor growth by a synthetic laminin peptide, CDPGYIGSR-NH2” Cancer Resch., vol. 51, pp. 903-906 (1991). |
Schaller, J. et al., “Structural Aspects of the Plasminogen of Various Species”, Enzyme, 40 pp. 63-69 (1988). |
Shi, G. et al., “Kringle Domains and Plasmin Denaturation”, Biochem. Biophy. Resch. Comm., vol. 178, No. 1, pp. 360-368 (1991). |
Sottrup-Jensen, L. et al., “The Primary Structure of Human Plasminogen Isolation of Two Lysine-Binding Fragments and One “Mini-” Plasminogen (MW, 38,000) by Elastase-Catalyzed-Specific Limited Proteolysis”, Prog. in Chem. Fibrinolysis and Thrombolysis, vol. 3, pp. 191-209 (1978). |
Srivastava, A. et al., “The Prognostic Significance of Tumorascularity in Intermediate-Thickness (0.76-4.0mm Thick) Skin Melanoma”, Am. J. of Path., vol. 133, No. 2., pp. 419-424 (1988). |
Strieter, R.M. et al., Interferonγ-inducible protein 10 (IP-10), a member of the C-X-C chemokine family, is an inhibitor of angiogenesis. Biochem. Biophys. Resch. Comm., vol. 210, pp. 51-57 (1995). |
Studier, W.F. et al., “Use of T7 RNA polymerase to direct expression of cloned genes”, Methods Enzymol., vol. 85, pp. 60-89 (1990). |
Teicher, B.A. et al., “Potentiation of cytotoxic cancer therapies by TNP-470 alone and with other antiangiogenic agents”, Int. J. Canc., vol. 57, pp. 1-6 (1994). |
Tolsma, S.S. et al., “Peptides derived from two separate domains of the matrix protein thrombospondin-1 have antiangiogenic activity”, J. Cell Biol., vol. 122, pp. 497-511 (1993). |
Van Meir, E. et al., “Release of an inhibitor of angiogenesis upon induction of wild type p53 expression in glioblastoma cells”, Nature Genetics, vol. 8, pp. 171-176 (1994). |
Voest, E. E. et al., “Inhibition of Angiogenesis in Vivo by Interleukin 12”, J. Natl. Can. Inst., vol. 87, pp. 581-586 (1995). |
Walz, D.A. et al., “Amino acid sequence of human prothrombin fragments 1 and 2”, Proc. Natl. Acad. Sci., vol. 74, pp. 1969-1973 (1977). |
Weidner, N. et al., “Tumor Angiogenesis: A New Significant and Independent Prognostic Indicator in Early-Stage Breast Carcinoma”, J. Natl. Canc. Inst., vol. 84, pp. 1875-1887 (1992). |
Weidner, N. et al., “Tumor Angiogenesis Correlates with Metastasis in Invasive Prostate Carcinoma”, Am. J. Path., vol. 143, No. 2, pp. 401-409 (1993). |
Weidner, N. et al., “Tumor Angiogenesis and Metastasis—Correlation in Invasive Breast Carcinoma”, NE J. of Med., vol. 324, No. 1, pp. 1-8 (1991). |
Wiman, B. et al., “On the Specific Interaction Between the Lysine-Binding Sites in Plasmin and Complementary Sites In α2-Antiplasmin and Fibrinogen”, Biochimica et Biophysica Acta. vol. 579, pp. 142 154 (1979). |
Yoshimura, T. et al., “Cloning, Sequencing, and Expression of Human Macrophage Stimulating Protein (MSP, MST1) Confirms MSP as a Member of the Family of Kringle Proteins and Locates the MSP Gene on Chromosome 3”, Laboratory of Immunobiology, pp. 15461-15468 (1993). |
Blezinger, Paul, et al. “Systemic inhibition of tumor growth and tumor metastases by intramuclular administration of the Endostatin gene” Nature Biotechnology, vol. 17, Apr. 1999, pp. 343-348. |
Dhanabal, Mohanraj, et al.: “Cloning, Expression, and In Vitro Activity of Human Endostatin” Biochemical and Biophysical Research Communications, US Academic Press Inc. Orlando, FL, vol. 258, No. 258, 1999 pp. 345-352. |
Ding, Yuan-Hua, et al.: “Zinc-dependent dimmers observed in crystals of human endostatin” Proc. Natl. Acad. Sci USA, vol. 95, No. 18, Sep. 1998, pp. 10443-10448. |
O'Reilly, Michael S., et al.; “Endostatin: and Endogenous Inhibitor of Angiogenesis and Tumor Growth” Cell, vol. 88, Jan. 24, 1997, pp. 277-285. |
Sasaki, Takako, et al.: “Structure, function and tissue forms of the C-terminal globular domain of collagen XVIII containing the angiogenesis inhibitor endostatin” The EMBO Journal, vol. 17, No. 15, Aug. 1998, pp. 4249-4256. |
Ständker, Ludger, et al.: “Isolation and characterization of the circulating form of human endostatin” FEBS Letters, NL, Elsevier Science Publishers, Amsterdam, vol. 420, No. 420, 1997, pp. 129-133. |