Pyridine methylene azolidinones and use thereof...

Drug – bio-affecting and body treating compositions – Designated organic active ingredient containing – Having -c- – wherein x is chalcogen – bonded directly to...

Reexamination Certificate

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C546S115000

Reexamination Certificate

active

08058289

ABSTRACT:
The present invention is related to pyridine methylene azolidinone derivatives of Formula (I) in particular for the treatment and/or prophylaxis of autoimmune disorders and/or inflammatory diseases, cardiovascular diseases, neurodegenerative diseases, bacterial or viral infections, kidney diseases, platelet aggregation, cancer, transplantation, graft rejection or lung injuries.

REFERENCES:
patent: 2007/0021447 (2007-01-01), Rueckle et al.
patent: 2007/0155776 (2007-07-01), Betschmann et al.
patent: 2008/0306057 (2008-12-01), Palmer et al.
patent: 2009/0028855 (2009-01-01), Cheng et al.
patent: 2009/0042773 (2009-02-01), Wetzker et al.
patent: 2009/0082357 (2009-03-01), Fitch et al.
patent: 2009/0099172 (2009-04-01), Cai et al.
patent: 2009/0306069 (2009-12-01), Rueckle et al.
patent: 2010/0063066 (2010-03-01), Buckmelter et al.
patent: 2004 007491 (2004-01-01), None
patent: 2004 052373 (2004-06-01), None
patent: 2004 056820 (2004-07-01), None
Shunsaku Shiotani, et al., “Furopyridines XXII' 1!. Elaboration of the C-Substituents Alpha to the Heteronitrogen Atom of Furo '2, 3-b!-, '3, 2-b!-, '2, 3-c!- and '3, 2-c! Pyridine”, J. Heterocyclic Chem., vol. 34, XP 002313138, pp. 901-907, 1997.
Malvinder P. Shingh, et al., “Synthesis and Sequence-Specific DNA Binding of a Topoisomerase Inhibitory Analog of Hoechst 33258 Designed for Altered Base and Sequece Recognition”, Chemical Research in Toxicology, vol. 5, No. 5, XP 002066288, pp. 597-607, 1992.
Kay M. Brummond, et al., “Solid-Phase Synthesis of BRL 49653”, J. Org. Chem. vol. 64, pp. 1723-1726, 1999.
Lewis C. Cantley, “The Phosphoinoisitide 3-Kinase Pathway”, Science, vol. 296, pp. 1655-1657, 2002.
M. P. Cava, et al., “Pyridine Derivatives. III. The Rearrangement of Some Simple 3-Halopyridine-N-Oxides”, J. Org. Chem., vol. 23, pp. 1616-1617, 1958.
Jin Soon Cha, et al., “Exceptionally Facile Reduction of Acid Chlorides to Aldehydes by Sodium Tri-Tert-Butoxyaluminohydride”, J. Org. Chem., vol. 58, No. 17, pp. 4732-4734, 1993.
J. D. Fraser, et al., “Regulation of Interleukin-2 Gene Enhancer Activity”, Science, vol. 251, pp. 313-316, 1991.
David A. Fruman, et al., “Phosphoinositide Kinases”, Annu. Rev. Biochem. vol. 67, pp. 481-507, 1998.
Graig Gerard, eta l., “Chemokines and Disease”, Nature Immunology, vol. 2, No. 2, pp. 108-115, 2001.
Steven Grant, “Targeted Therapies in Cancer-Second International Congress”, Idrugs, vol. 6, No. 10, pp. 946-948, 2003.
Emilio Hirsch, et al., “Central Role for G Protein-Coupled Phosphoinositide 3-Kinase γ in Inflammation”, Science, vol. 287, pp. 1049-1053, 2000.
Emilio Hirsch, et al., “Resistance to Thromboembolism in PI3Kγ-Deficient Mice”, The Faseb Journal, vol. 15, No. 11, pp. 2019-2021, 2001.
Roy Katso, et al., “Cellular Function of Phosphoinositide 3 Kinases: Implications for Development, Immunity, Homeostasis, and Cancer”, Annu. Rev. Cell. Dev. Biol., vol. 17, pp. 617-675, 2001.
Muriel Laffargue, et al., “Phosphoinositide 3-Kinase γ is an Essential Amplifier of Mast Cell Function”, Immunity, vol. 16, No. 3, pp. 441-451, 2001.
Margaret A. Lawlor, et al.,“PKB/AKT: A Key Mediator of Cell Proliferation, Survival and Insulin Response”, Journal of Cell Science, vol. 114, No. 16, pp. 2903-2010, 2001.
Nick R. Leslie, et al., “Phosphoinositide-Regulated Kinases and Phosphoinositide Phosphatases”, Chem. Rev. vol. 101, No. 8, pp. 2365-2380, 2001.
Marco Lopez-Ilasaca, et al., “Phosphoinositide 3-Kinase γ is a Mediator of Gβγ -Dependent Jun Kinase Activation”, The Journal of Biological Chemistry, vol. 273, No. 5, pp. 2505-2508, 1998.
Francoise Pages, et al., “Binding of Phosphatidylinositol-3-OH Kinase to CD28 is Required for T-Cell Signalling”, Nature, vol. 369, pp. 327-329, 1994.
Peter J. Parker, “Pi 3-Kinas Puts GTP on the Rac”, Current Biology, vol. 5, No. 6, pp. 577-579, 1995.
Ananthachari Srinivasan, et al., “Pyridopyrimidines. 10. Nucleophilic Substitutions in the Pyrido [3, 2-d] Pyrimidine Series”, J. Org. Chem. vol. 44, No. 3, pp. 435-440, 1979.
Robert C. Stein, et al “PI3- Kinase Inhibition: A Target for Drug Development?”, Molecular Medicine Today, vol. 6, No. 9, pp. 347-357, 2000.
Lens Stephens, et al., “Roles of PI3KS in Leukocyte Chemotaxis and Phagocytosis”, Current Opinion Cell Biology, vol. 14, No. 2, pp. 203-213, 2002.
Marcus Thelen, et al., “Wortmannin Binds Specifically to 1-Phosphatidylinositol 3-Kinase While Inhibiting Guanine Nucleotide-Binding Protein-Coupled Receptor Signaling in Neutrophil Leukocytes”, Proc. Natl. Acad. Sci. USA, vol. 91, pp. 2960-4964, 1994.
Lutz F. Tietze, et al., “The Knoevenagel Reaction”, Pergamon Press, Oxford, EDS.: Trost B. M., Fleming I, pp. 341-394, 1991.
A Toker, “Phosphoinositides and Signal Transduction”, CMLS Cellular and Molecular Life Sciences, vol. 59, No. 5, pp. 761-779, 2002.
Bart Vanhaesebroeck, et al., “Synthesis and Function of 3-Phosphorylated Inositol Lipids”, Annu. Rev. Biochem., vol. 70, pp. 535-602, 2001.
Matthias P. Wymann, et al., “Lipids on the Move: Phosphoinositide 3-Kinases in Leukocyte Function”, Trends Immunology Today, vol. 21, No. 6, pp. 260-264, 2000.
Ryoji Yao, et al., “Requirement for Phosphatidylinositol-3 Kinase in the Prevention of Apoptosis by Nerve Growth Factor”, Science, vol. 267, pp. 2003-2006, 1995.
R. N. P. Singh, et al., “Modified Forms of Human Growth Hormone with with Increased Biological Activities”, American Cancer Society, vol. 94, No. 3, pp. 883-891, 1974.
Joseph B. Schwartz, “Pharmaceutical Manufacturing”, Part 5 of Remington's Pharmaceutical Sciences, 20thEdition Marck Publishing Company, pp. 670-1050, 2000.
Matthew J. Thomas, et al.; “Airway inflammation: chemokine-induced neutrophilia and the class I phosphoinositide 3-kinases”; European Journal of Immunology; 2005; 35; pp. 1283-1291.
Montserrat Camps, et al.; “Blockade of PI3Kγ suppresses joint inflammation and damage in mouse models of rheumatoid arthritis”; Nature Medicine; Sep. 2005; vol. 11;No. 9; pp. 936-943.
Domingo F. Barber, et al.; “PI3Kγinhibition blocks glomerulonephritis and extends lifespan in a mouse model of systemic lupus”; Brief Communications; Nature Medicine; Sep. 2005; vol. 11; No. 9; pp. 933-935.
Carmine Vecchione, et al.; Protection from angiotensin II-mediated vasculotoxic and hypertensive response in mice lacking PI3Kγ; The Journal of Experimental Medicine; Apr. 18, 2005; vol. 201; No. 8; pp. 1217-1228.
Enrico Lupia, et al.; “Ablation of Phosphoinositide 3-kinase-γReduces the Severity of Acute Pancreatitis”; American Journal of Pathology; 2004; 165 (Abstract Only).
M. P. Wymann, et al.; “Phosphoinositide 3-kinaseγ: a key modulator in inflammation and allergy”; Biochemical Society; 2003; pp. 275-280.
Emilio Hirsch, et al.: “Resistance to thromboembolism in PI3Kγ-deficient mice1”; The FASEB Journal; Sep. 2001; vol. 15; pp. 2019-2021.
Ho-Kee Yum, et al.;“Involvement of Phosphoinositide 3-Kinases in Neutrophil Activation and the Development of Acute Lung Injury”; The American Association of Immunologists; 2001; pp. 6601-6608.
Enrico Patrucco, et al.; “PI3Kγ Modulates the Cardiac Response to Chronic Pressure Overload by Distinct Kinase-Dependent and-Independent Effects”; Cell Press; Aug. 6, 2004; vol. 118; pp. 375-387.
Annalisa Del Prete, et al.; “Defective dendritic cell migration and activation of adaptive immunity in PI3Kγ-deficient mice”; The EMBO Journal; 2004 European Molecular Biology Organization; vol. 23; No. 17; pp. 3505-3515.
Thomas Rückle, et al.; PI3Kγinhibition: towards an ‘aspirin of

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