Patents Issued in December 18, 2007
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Patent number: 7309747Abstract: A 1-butene polymer satisfying the following (1), (2) and either (3) or (3?): a process for producing the polymer; a resin modifier comprising the polymer; and a hot-melt adhesive containing the polymer. (1) The intrinsic viscosity [?] as measured in tetralin solvent at 135° C. is 0.01 to 0.5 dL/g. (2) The polymer is a crystalline resin having a melting point (Tm-D) of 0 to 100° C., the melting point being defined as the top of the peak observed on the highest-temperature side in a melting endothermic curve obtained with a differential scanning calorimeter (DSC) in a test in which a sample is held in a nitrogen atmosphere at ?10° C. for 5 min and then heated at a rate of 10° C./min. (3) The stereoregularity index {(mmmm)/(mmrr+rmmr)} is 30 or lower. (3?) The mesopentad content (mmmm) determined from a nuclear magnetic resonance (NMR) spectrum is 68 to 73%.Type: GrantFiled: February 19, 2003Date of Patent: December 18, 2007Assignee: Idemitsu Kosan Co., Ltd.Inventors: Yutaka Minami, Masami Kanamaru, Toyozo Fujioka, Tomoaki Takebe, Masao Inoue
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Patent number: 7309748Abstract: The present invention discloses a metallocene catalyst component of the formula (I) [(Flu-R?-Cp)2M]?[Li(ether)4]+, wherein Cp is a cyclopentadienyl, substituted or unsubstituted, Flu is a fluorenyl, substituted or unsubstitutted, M is a metal Group III of the Periodic Table, and R? is a structural bridge between Cp and Flu imparting stereorigidity to the component. It further discloses a process for preparing said metallocene catalyst component and its use in controlled polymerisation.Type: GrantFiled: January 23, 2004Date of Patent: December 18, 2007Assignee: Total Petrochemicals Research FeluyInventors: Jean-Francois Carpentier, Evgueni Kirillov, Abbas Razavi
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Patent number: 7309749Abstract: A branched aromatic ionomer is prepared by co-polymerizing a first monomer having an aromatic moiety and an unsaturated alkyl moiety and a second monomer having an ionic moiety and at least one unsaturated moiety. The ionic moiety may have a cationic group having a valence of +1 or greater. Styrene is among the useful first monomers and sodium methacrylate and zinc dimethacrylate are among the useful second monomers. The branched aromatic ionomers may be used to prepare articles including foamed polystyrene and microwave save dishes and utensils.Type: GrantFiled: December 13, 2006Date of Patent: December 18, 2007Assignee: Fina Technology, Inc.Inventors: Jay Reimers, Jose M. Sosa
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Patent number: 7309750Abstract: Cyanoadamantyl compounds, polymers that comprise polymerized units of such compounds, and photoresist compositions that comprise such polymers are provided. Preferred polymers of the invention are employed in photoresists imaged at wavelengths less than 250 nm such as 248 nm and 193 nm.Type: GrantFiled: March 8, 2005Date of Patent: December 18, 2007Assignee: Rohm and Haas Electronic Materials LLCInventors: Young C. Bae, Robert J. Kavanagh
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Patent number: 7309751Abstract: The present invention provided a norbornene compound with cross-linkable groups and their derivative polymers, wherein said cross-linkable groups were olefin or epoxy groups. Norbornene polymers with cross-linkable side chain and their block copolymers as well as modified derivatives were prepared via living ring-open metathesis polymerization method. The resulting polymers with excellent solubility and optic properties had narrow molecular weight distribution, well-controlled molecular weight, small refraction ration and high transparency. They were also suitable for preparing hybrid materials with high thermal stability and chemical resistance.Type: GrantFiled: September 18, 2006Date of Patent: December 18, 2007Assignee: National Taiwan University of Science & TechnologyInventors: Der-Jang Liaw, Ching-Chang Huang
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Patent number: 7309752Abstract: A polymer obtained by polymerizing, in a presence of a polymerization initiator, a compound having a cage structure with at least 11 carbon atoms and an ethylenic double bond; a film forming composition containing the polymer; an insulating film formed using the composition; and an electronic device.Type: GrantFiled: September 27, 2006Date of Patent: December 18, 2007Assignee: FUJIFILM CorporationInventors: Katsuyuki Watanabe, Hidetoshi Hiraoka
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Patent number: 7309753Abstract: A process for preparing a moisture-curable, polyether urethane containing terminal cyclic urea/reactive silane groups by reacting at an NCO:OH equivalent ratio of 1.5:1 to 2.5:1 a) a hydroxyl component containing i) a polyether containing two hydroxyl groups and one or more polyether segments, wherein the polyether segments have a number average molecular weight of at least 3000 and a degree of unsaturation of less than 0.04 milliequivalents/g, and ii) a polyether containing one hydroxyl group and one or more polyether segments having a number average molecular weight of 1000 to 15,000, with b) an isocyanate component containing i) a compound containing two isocyanate groups, and ii) a compound containing one isocyanate group, and subsequently reacting this reaction product at an equivalent ratio of isocyanate groups to isocyanate-reactive groups of 0.8:1 to 1.Type: GrantFiled: December 5, 2003Date of Patent: December 18, 2007Assignee: Bayer MaterialScience LLCInventors: Richard R. Roesler, Derek L. Crawford
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Patent number: 7309754Abstract: An encapsulant fluid is provided comprising a mixture of a diene-containing compound and a dienophilic compound. At least one of the diene-containing and the dienophilic compounds is protected so that the compounds do not substantially react with each other at room temperature. The diene-containing and the dienophilic compounds undergo a reversible Diels-Alder polymerization reaction at a polymerization temperature above room temperature to form a solid debondable polymeric encapsulant. Also provided are methods for forming slider assemblies and methods for patterning a slider surface using the encapsulant.Type: GrantFiled: September 26, 2003Date of Patent: December 18, 2007Assignee: Hitachi Global Storage Technologies Netherlands B.V.Inventors: Phillip Joe Brock, Michael W. Chaw, Dan Dawson, Craig Hawker, James L. Hedrick, Teddie P. Magbitang, Dennis McKean, Robert D. Miller, Richard I. Palmisano, Willi Volksen
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Patent number: 7309755Abstract: A method for making a polycarbonate article is described wherein the article is made by rotation molding a melt polycarbonate having a weight average molecular weight from 25,000 to about 36,000. The melt polycarbonate is produced by transesterifying a diaryl carbonate and a dihydroxy compound in the presence of a catalyst system to form an intermediate aromatic polycarbonate, wherein the catalyst system comprises a first catalyst selected from the group consisting of alkali metal salts and alkaline earth metal salts; and a second catalyst selected from the group consisting of quaternary ammonium compounds and quaternary phosphonium compounds; adding to said intermediate aromatic polycarbonate a catalyst quencher, and rotation molding the aromatic polycarbonate at a temperature from about 305° C. to about 360° C. Also disclosed are polycarbonate light diffusive articles produced by rotation molding.Type: GrantFiled: August 24, 2005Date of Patent: December 18, 2007Assignee: General Electric CompanyInventor: Johannes Martinus Dina Goossens
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Patent number: 7309756Abstract: Macrocyclic oligoesters and compositions comprising macrocyclic oligoesters are prepared from intermediate molecular weight polyesters. In one embodiment, a diol is contacted with a dicarboxylic acid or a dicarboxylate in the presence of a catalyst to produce a composition comprising a hydroxyalkyl-terminated polyester oligomer. The hydroxyalkyl-terminated polyester oligomer is heated to produce a composition comprising an intermediate molecular weight polyester which preferably has a molecular weight between about 20,000 Daltons and about 70,000 Daltons. The intermediate molecular weight polyester is heated and a solvent is added prior to or during the heating process to produce a composition comprising a macrocyclic oligoester. An optional step is to separate the macrocyclic oligoester from the composition comprising the macrocyclic oligoester.Type: GrantFiled: February 10, 2006Date of Patent: December 18, 2007Assignee: Cyclics CorporationInventor: Gary R. Faler
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Patent number: 7309757Abstract: Provided is a poly(amino ester) having a polymer backbone comprising at least one secondary amine linkage and at least one tertiary amine linkage in the polymer backbone. Poly(amino ester)s are prepared via the Michael addition of a bis(acrylate ester)monomer to a diamine monomer, wherein the diamine monomer has one primary amino group and one secondary amino group, and can be end-capped by reaction with a suitable reagent. The inventive poly(amino ester)s may be used as vectors for delivery of a bioactive agent, such as DNA, to a cell.Type: GrantFiled: June 20, 2003Date of Patent: December 18, 2007Assignee: Agency for Science, Technology and ResearchInventors: Ye Liu, Shu Wang, Chaobin He
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Patent number: 7309758Abstract: A PBI compound includes imidazole nitrogens at least a portion of which are substituted with a moiety containing a carbonyl group, the substituted imidazole nitrogens being bonded to carbon of the carbonyl group. At least 85% of the nitrogens may be substituted. The carbonyl-containing moiety may include RCO—, where R is alkoxy or haloalkyl. The PBI compound may exhibit a first temperature marking an onset of weight loss corresponding to reversion of the substituted PBI that is less than a second temperature marking an onset of decomposition of an otherwise identical PBI compound without the substituted moiety. The PBI compound may be included in separatory media. A substituted PBI synthesis method may include providing a parent PBI in a less than 5 wt % solvent solution. Substituting may use more than 5 equivalents in relation to the imidazole nitrogens to be substituted.Type: GrantFiled: October 19, 2004Date of Patent: December 18, 2007Assignee: Battelle Energy Alliance, LLCInventors: John R. Klaehn, Eric S. Peterson, Christopher J. Orme, Michael G. Jones, Alan K. Wertsching, Thomas A. Luther, Tammy L. Trowbridge
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Patent number: 7309759Abstract: Compositions and methods for treating infections, especially bacterial infections, are provided. Indolicidin peptide analogues containing at least two basic amino acids are prepared. The analogues are administered as modified peptides, preferably containing photo-oxidized solubilizer.Type: GrantFiled: October 18, 2002Date of Patent: December 18, 2007Assignee: Migenix Inc.Inventors: Timothy J Krieger, Robert Taylor, Douglas Erfle, Janet R Fraser, Michael H P West, Patricia J McNicol
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Patent number: 7309760Abstract: The CA125 gene has been cloned and multiple repeat sequences as well as the carboxy terminus have been identified. The CA125 molecule comprises three major domains: an extracellular amino terminal domain (Domain 1); a large multiple repeat domain (Domain 2); and a carboxy terminal domain (Domain 3) which includes a transmembrane anchor with a short cytoplasmic domain. The amino terminal domain has numerous O-glycosylation sites. Domain 2 is a repeat domain comprising homologous repeat units of 156 amino acids. More than 60 repeat units have been identified, sequenced, and contiguously placed in the CA125 domain structure. The repeat units are the sites of OC125 and M11 antibody binding. The CA125 molecule is anchored at its carboxy terminal through a transmembrane domain and a short cytoplasmic tail.Type: GrantFiled: September 27, 2001Date of Patent: December 18, 2007Assignee: The Board of Trustees of the University of ArkansasInventors: Timothy J. O'Brien, John B. Beard, Lowell J. Underwood
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Patent number: 7309761Abstract: The present invention is directed to novel polypeptides and to nucleic acid molecules encoding those polypeptides. Also provided herein are vectors and host cells comprising those nucleic acid sequences, chimeric polypeptide molecules comprising the polypeptides of the present invention fused to heterologous polypeptide sequences, antibodies which bind to the polypeptides of the present invention and to methods for producing the polypeptides of the present invention.Type: GrantFiled: November 15, 2001Date of Patent: December 18, 2007Assignee: Genentech, Inc.Inventors: Audrey Goddard, Paul J. Godowski, Austin L. Gurney, Colin K. Watanabe, William I. Wood, Timothy A. Stewart
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Patent number: 7309762Abstract: The present invention is directed to novel polypeptides and to nucleic acid molecules encoding those polypeptides. Also provided herein are vectors and host cells comprising those nucleic acid sequences, chimeric polypeptide molecules comprising the polypeptides of the present invention fused to heterologous polypeptide sequences, antibodies which bind to the polypeptides of the present invention and to methods for producing the polypeptides of the present invention.Type: GrantFiled: April 19, 2002Date of Patent: December 18, 2007Assignee: Genentech, Inc.Inventors: Audrey Goddard, Paul J. Godowski, Austin L. Gurney, Victoria Smith, Colin K. Watanabe, William I. Wood
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Patent number: 7309763Abstract: The present invention is directed to novel polypeptides having homology to the olfactomedin protein and to nucleic acid molecules those polypeptides. Also provided herein are vectors and host cells comprising those nucleic acid sequences, chimeric polypeptid molecules comprising the polypeptides of the present invention fused to heterologous polypeptide sequencs, antibodies which bind to the polypeptides of the present invention and to methods for producing the polypeptides of the present invention.Type: GrantFiled: April 22, 2002Date of Patent: December 18, 2007Assignee: Genentech, Inc.Inventors: Audrey Goddard, Paul J. Godowski, Austin L. Gurney, Victoria Smith, Colin K. Watanabe, William I. Wood
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Patent number: 7309764Abstract: The present invention is directed to novel polypeptides and to nucleic acid molecules encoding those polypeptides. Also provided herein are vectors and host cells comprising those nucleic acid sequences, chimeric polypeptide molecules comprising the polypeptides of the present invention fused to heterologous polypeptide sequences, antibodies which bind to the polypeptides of the present invention and to methods for producing the polypeptides of the present invention.Type: GrantFiled: May 7, 2002Date of Patent: December 18, 2007Assignee: Genentech, Inc.Inventors: Audrey Goddard, Paul J. Godowski, Austin L. Gurney, Victoria Smith, William I. Wood
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Patent number: 7309765Abstract: The present invention is directed to novel polypeptides and to nucleic acid molecules encoding those polypeptides. Also provided herein are vectors and host cells comprising those nucleic acid sequences, chimeric polypeptide molecules comprising the polypeptides of the present invention fused to heterologous polypeptide sequences, antibodies which bind to the polypeptides of the present invention and to methods for producing the polypeptides of the present invention.Type: GrantFiled: May 7, 2002Date of Patent: December 18, 2007Assignee: Genentech, Inc.Inventors: Audrey Goddard, Paul J. Godowski, Austin L. Gurney, Victoria Smith, William I. Wood
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Patent number: 7309766Abstract: The present invention is directed to novel polypeptides and to nucleic acid molecules encoding those polypeptides. Also provided herein are vectors and host cells comprising those nucleic acid sequences, chimeric polypeptide molecules comprising the polypeptides of the present invention fused to heterologous polypeptide sequences, antibodies which bind to the polypeptides of the present invention and to methods for producing the polypeptides of the present invention.Type: GrantFiled: May 9, 2002Date of Patent: December 18, 2007Assignee: Genetech, Inc.Inventors: Audrey Goddard, Paul J. Godowski, Austin L. Gurney, Victoria Smith, Colin K. Watanabe, William I. Wood
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Patent number: 7309767Abstract: The present invention is directed to novel polypeptides and to nucleic acid molecules encoding those polypeptides. Also provided herein are vectors and host cells comprising those nucleic acid sequences, chimeric polypeptide molecules comprising the polypeptides of the present invention fused to heterologous polypeptide sequences, antibodies which bind to the polypeptides of the present invention and to methods for producing the polypeptides of the present invention.Type: GrantFiled: May 9, 2002Date of Patent: December 18, 2007Assignee: Genentech, Inc.Inventors: Audrey Goddard, Paul J. Godowski, Austin L. Gurney, Victoria Smith, Colin K. Watanabe, William I. Wood
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Patent number: 7309768Abstract: The present invention is directed to novel polypeptides and to nucleic acid molecules encoding those polypeptides. Also provided herein are vectors and host cells comprising those nucleic acid sequences, chimeric polypeptide molecules comprising the polypeptides of the present invention fused to heterologous polypeptide sequences, antibodies which bind to the polypeptides of the present invention and to methods for producing the polypeptides of the present invention.Type: GrantFiled: May 9, 2002Date of Patent: December 18, 2007Assignee: Genentech, Inc.Inventors: Audrey Goddard, Paul J. Godowski, Austin L. Gurney, Victoria Smith, William I. Wood
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Patent number: 7309769Abstract: The present invention is directed to novel polypeptides and to nucleic acid molecules encoding those polypeptides. Also provided herein are vectors and host cells comprising those nucleic acid sequences, chimeric polypeptide molecules comprising the polypeptides of the present invention fused to heterologous polypeptide sequences, antibodies which bind to the polypeptides of the present invention and to methods for producing the polypeptides of the present invention.Type: GrantFiled: June 26, 2002Date of Patent: December 18, 2007Assignee: Genentech, Inc.Inventors: Audrey Goddard, Paul J. Godowski, Austin L. Gurney, Victoria Smith, William I. Wood
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Patent number: 7309770Abstract: The present invention is directed to novel polypeptides and to nucleic acid molecules encoding those polypeptides. Also provided herein are vectors and host cells comprising those nucleic acid sequences, chimeric polypeptide molecules comprising the polypeptides of the present invention fused to heterologous polypeptide sequences, antibodies which bind to the polypeptides of the present invention and to methods for producing the polypeptides of the present invention.Type: GrantFiled: June 27, 2002Date of Patent: December 18, 2007Assignee: Genentech, Inc.Inventors: Audrey Goddard, Paul J. Godowski, Austin L. Gurney, Victoria Smith, Colin K. Watanabe, William I. Wood
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Patent number: 7309771Abstract: The present invention is directed to novel polypeptides and to nucleic acid molecules encoding those polypeptides. Also provided herein are vectors and host cells comprising those nucleic acid sequences, chimeric polypeptide molecules comprising the polypeptides of the present invention fused to heterologous polypeptide sequences, antibodies which bind to the polypeptides of the present invention and to methods for producing the polypeptides of the present invention.Type: GrantFiled: July 16, 2002Date of Patent: December 18, 2007Assignee: Genentech, Inc.Inventors: Kevin P. Baker, Jian Chen, Luc Desnoyers, Audrey Goddard, Paul J. Godowski, Austin L. Gurney, James Pan, Victoria Smith, Colin K. Watanabe, William I. Wood, Zemin Zhang
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Patent number: 7309772Abstract: The invention provides isolated nucleic acid and amino acid sequences of KCNQ5, antibodies to KCNQ5, methods of detecting KCNQ5, methods of screening for potassium channel activators and inhibitors using biologically active KCNQ5, and kits for screening for activators and inhibitors of voltage-gated potassium channels comprising KCNQ5.Type: GrantFiled: February 3, 2006Date of Patent: December 18, 2007Assignee: Icagen, Inc.Inventor: Timothy James Jegla
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Patent number: 7309773Abstract: Flax protein isolates are obtained in a procedure in which flax oil seeds are initially extracted to remove mucilage therefrom prior to crushing to recover the oil and produce a meal. The flax protein meal then is processed to recover a flax protein isolate therefrom.Type: GrantFiled: July 30, 2004Date of Patent: December 18, 2007Assignee: Burcon Nutrascience (MB) Corp.Inventors: Brent E. Green, Radka Milanova, James Logie
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Patent number: 7309774Abstract: Human ?2-antiplasmin (?2AP) is the major inhibitor of the proteolytic enzyme plasmin that digests fibrin. Two forms of ?2AP circulate in human plasma: a 464-residue protein, which we have termed “pro”-form, or ?2APpro, and an N-terminally-shortened 452-residue “activated”-form, or ?2APact. The latter becomes crosslinked to fibrin by activated factor XIII about 5-fold more rapidly than ?2APpro and makes fibrin resistant to digestion by plasmin. A new human plasma proteinase has been identified herein that cleaves the Pro12-Asn13 bond of ?2APpro to yield ?2APact. This enzyme is identified herein as Antiplasmin Cleaving Enzyme (APCE).Type: GrantFiled: February 6, 2004Date of Patent: December 18, 2007Assignee: The Board of Regents of the University of OklahomaInventors: Patrick A. McKee, Kyung N. Lee, Kenneth W. Jackson, Victoria J. Christiansen
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Patent number: 7309775Abstract: The present invention is directed to novel polypeptides and to nucleic acid molecules encoding those polypeptides. Also provided herein are vectors and host cells comprising those nucleic acid sequences, chimeric polypeptide molecules comprising the polypeptides of the present invention fused to heterologous polypeptide sequences, antibodies which bind to the polypeptides of the present invention and to methods for producing the polypeptides of the present invention.Type: GrantFiled: November 15, 2001Date of Patent: December 18, 2007Assignee: Genentech, Inc.Inventors: Audrey Goddard, Paul J. Godowski, Austin L. Gurney, Colin K. Watanabe, William I. Wood, Timothy A. Stewart
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Patent number: 7309776Abstract: The present invention is directed to novel polypeptides and to nucleic acid molecules encoding those polypeptides. Also provided herein are vectors and host cells comprising those nucleic acid sequences, chimeric polypeptide molecules comprising the polypeptides of the present invention fused to heterologous polypeptide sequences, antibodies which bind to the polypeptides of the present invention and to methods for producing the polypeptides of the present invention.Type: GrantFiled: July 15, 2002Date of Patent: December 18, 2007Assignee: Genentech, Inc.Inventors: Audrey Goddard, Paul J. Godowski, Austin L. Gurney, Victoria Smith, Colin K. Watanabe, William I. Wood
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Patent number: 7309777Abstract: The present invention is directed to novel polypeptides and to nucleic acid molecules encoding those polypeptides. Also provided herein are vectors and host cells comprising those nucleic acid sequences, chimeric polypeptide molecules comprising the polypeptides of the present invention fused to heterologous polypeptide sequences, antibodies which bind to the polypeptides of the present invention and to methods for producing the polypeptides of the present invention.Type: GrantFiled: April 24, 2002Date of Patent: December 18, 2007Assignee: Genentech, Inc.Inventors: Audrey Goddard, Paul J. Godowski, Austin L. Gurney, Victoria Smith, Colin K. Watanabe, William I. Wood
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Patent number: 7309778Abstract: The present invention is directed to novel polypeptides and to nucleic acid molecules encoding those polypeptides. Also provided herein are vectors and host cells comprising those nucleic acid sequences, chimeric polypeptide molecules comprising the polypeptides of the present invention fused to heterologous polypeptide sequences, antibodies which bind to the polypeptides of the present invention and to methods for producing the polypeptides of the present invention.Type: GrantFiled: May 14, 2002Date of Patent: December 18, 2007Assignee: Genentech, Inc.Inventors: Kevin P. Baker, Maureen Beresini, Laura DeForge, Luc Desnoyers, Ellen Filvaroff, Wei-Qiang Gao, Mary E. Gerritsen, Audrey Goddard, Paul J. Godowski, Austin L. Gurney, Steven Sherwood, Victoria Smith, Timothy A. Stewart, Daniel Tumas, Colin K. Watanabe, William I. Wood, Zemin Zhang
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Patent number: 7309779Abstract: The present invention provides novel polynucleotides encoding BGS-42 polypeptides, fragments and homologues thereof. Also provided are vectors, host cells, antibodies, and recombinant and synthetic methods for producing said polypeptides. The invention further relates to diagnostic and therapeutic methods for applying these novel BGS-42 polypeptides to the diagnosis, treatment, and/or prevention of various diseases and/or disorders related to these polypeptides. The invention further relates to screening methods for identifying agonists and antagonists of the polynucleotides and polypeptides of the present invention.Type: GrantFiled: June 2, 2006Date of Patent: December 18, 2007Assignee: Bristol-Myers Squibb CompanyInventors: John N. Feder, Shujian Wu, Thomas C. Nelson, Liana M. Lee
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Patent number: 7309780Abstract: The invention relates to NKAF II polypeptides, polynucleotides encoding the polypeptides, methods for producing the polypeptides, in particular by expressing the polynucleotides, and agonists and antagonists of the polypeptides. The invention further relates to methods for utilizing such polynucleotides, polypeptides, agonists and antagonists for applications, which relate, in part, to research, diagnostic and clinical arts.Type: GrantFiled: March 20, 2006Date of Patent: December 18, 2007Assignee: Human Genome Sciences, Inc.Inventors: Jian Ni, Haodong Li, Guo-Liang Yu, Reiner L. Gentz
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Patent number: 7309781Abstract: The growth hormone supergene family comprises greater than 20 structurally related cytokines and growth factors. A general method is provided for creating site-specific, biologically active conjugates of these proteins. The method involves adding cysteine residues to non-essential regions of the proteins or substituting cysteine residues for non-essential amino acids in the proteins using site-directed mutagenesis and then covalently coupling a cysteine-reactive polymer or other type of cysteine-reactive moiety to the proteins via the added cysteine residue. Disclosed herein are preferred sites for adding cysteine residues or introducing cysteine substitutions into the proteins, and the proteins and protein derivatives produced thereby.Type: GrantFiled: May 27, 2004Date of Patent: December 18, 2007Assignee: Bolder Biotechnology, Inc.Inventor: George N. Cox, III
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Patent number: 7309782Abstract: The invention relates to novel crystal forms of azithromycin, an antibiotic useful in the treatment of infections.Type: GrantFiled: August 28, 2003Date of Patent: December 18, 2007Assignee: Pfizer Inc.Inventors: Zheng J. Li, Andrew V. Trask
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Patent number: 7309783Abstract: This disclosure encompasses the edr3 polynucleotide, polypeptides encoded by the edr3 gene and fragments thereof. This disclosure also encompasses homologues of the edr3 gene from mammals, in particular from humans. In addition, this disclosure encompasses the use of edr3 polynucleotides, edr3 proteins and polypeptides, and antibodies to the edr3 protein capable of increasing or decreasing edr3 activity or expression.Type: GrantFiled: May 9, 2002Date of Patent: December 18, 2007Assignee: The University of ConnecticutInventors: Marc F. Hansen, Amit Deshpande
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Patent number: 7309784Abstract: Polypeptide and polynucleotide vaccines effective to treat or prevent infection of a mammal, such as a dog, a cat, or a human, by a protozoan. Methods of treatment and prevention are also provided, including therapeutic administration of the vaccine to an infected mammal to prevent progression of infection to a chronic debilitating disease state. Preferred embodiments of the polynucleotide vaccine contain nucleotide coding regions that encode polypeptides that are surface-associated or secreted by T. cruzi. Optionally the efficacy of the polynucleotide vaccine is increased by inclusion of a nucleotide coding region encoding a cytokine. Preferred embodiments of the polypeptide vaccine include immunogenic peptides that contain membrane transducing sequences that allow the polypeptides to translocate across a mammalian cell membrane.Type: GrantFiled: December 17, 2004Date of Patent: December 18, 2007Assignee: University of Georgia Research Foundation, Inc.Inventors: Rick L. Tarleton, Nisha Garg
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Patent number: 7309785Abstract: This invention provides modified, insecticidal Cry35 proteins with enhanced properties as compared to wild-type Cry35 proteins. The modifications to these proteins were based in part on analysis of the atomic coordinates and three-dimensional (3D) structure of the ˜45 kDa 149B1 protein and other proteins in the Cry35 class. The subject invention also includes polynucleotides that encode these modified proteins, and transgenic plants that produce these modified proteins. This invention further provides methods of controlling plant pests, including rootworms, with these modified proteins. The modified proteins of the subject invention include chimeric toxins involving exchanged segments, domains, and motifs as discussed herein. The subject invention also provides methods of modifying Cry35 proteins.Type: GrantFiled: October 1, 2004Date of Patent: December 18, 2007Assignee: Dow AgroSciences LLCInventors: H. Ernest Schnepf, Kenneth Edwin Narva, Steven Lee Evans
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Patent number: 7309786Abstract: The present invention relates to a group of new oligonucleotides sequences with human tumor necrosis factor ? (TNF-?) inhibiting activity, which includes DNA sequences and RNA sequences. These oligonucleotides or aptamer can specifically be bound to TNF-? and inhibit the cytoxicity of TNF-? to L929 cells. Therefore, the aptamer of the present invention may be used to detect TNF-? and provide a therapeutic method for diseases related to the increasing level of TNF-?. Compared with other TNF antagonists such as monoclonal antibody and soluble receptor, the present invention has high specificity, high affinity, quick penetration to target tissue, rapid plasma clearance, and lower immunogenecity. Turthermore, it can be used repeatedly and keeps high concentration in target tissue and the like. It has the advantages of affinity and specificity similar to monoclonal antibodies and also has permeability and pharmacokinetics characteristics similar to small molecular polypeptide.Type: GrantFiled: April 13, 2004Date of Patent: December 18, 2007Assignees: Institute for Viral Disease Control and Prevention, Chinese Center for Disease Control and PreventionInventors: Zhiqing Zhang, Xinrui Yan, Ketai Guo, Chunxiao Xu
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Patent number: 7309787Abstract: The present invention relates to organic molecules capable of modulating tyrosine kinase signal transduction in order to regulate, modulate and/or inhibit abnormal cell proliferation.Type: GrantFiled: July 6, 2006Date of Patent: December 18, 2007Assignee: Allergan, Inc.Inventor: Julie A. Wurster
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Patent number: 7309788Abstract: A process for preparing pyrimidinone compound and salts thereof The method of the present invention enables the convenience to produce the pyrimidinone derivatives in high yields, which pyrimidinone compounds are useful for treating cardiovascular diseases caused by binding angiotensin II to its receptors, through antagonistic activity against angiotensin II receptors.Type: GrantFiled: September 21, 2001Date of Patent: December 18, 2007Assignee: Boryung Pharmaceutical Co., Ltd.Inventors: Sang-Lin Kim, Ji-Han Kim, Jung-Bok Lee, Byoung-Wug Yoo, Hyun-Kwang Tan
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Patent number: 7309789Abstract: Compounds are provided that, by way of their selective neurotransmitter binding useful for the treatment of various neurological and psychological disorders, e.g., ADHD. Such compounds are 4-phenyl substituted tetrahydroisoquinolines having the Formula IA, IB, IIA, IIB, IIIA or IIIC as set forth herein.Type: GrantFiled: May 22, 2006Date of Patent: December 18, 2007Assignee: AMR Technology, Inc.Inventors: James P. Beck, Anthony D. Pechulis, Arthur E. Harms
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Patent number: 7309790Abstract: The present invention provides compounds of formula (I) wherein R1 and R2 are as defined hereinabove. The compounds of the present invention are modulators, especially antagonists, of the activity of chemokine CCR5 receptors. Modulators of the CCR5 receptor may be useful in the treatment of various inflammatory diseases and conditions, and in the treatment of infection by HIV and genetically related retroviruses.Type: GrantFiled: September 28, 2004Date of Patent: December 18, 2007Assignee: Pfizer IncInventor: Paul Anthony Stupple
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Patent number: 7309791Abstract: The invention relates to new compounds, being 3-phenylpropionic acid derivatives of formula I wherein W represents COOH group or its bioisosters, or —COO—C1–C4-alkyl group; Y represents NH, N—C1–C10-alkyl, O, or S; Z represents NH, N—C1–C10-alkyl, N-aryl, N-heteroaryl, S, or O; X represents O, S, NH, N—C1–C10-alkyl, N-aryl, NSO2—C1–C10-alkyl, N—SO2-aryl, or N—SO2-heteroaryl; R1, to R6 each independently represent hydrogen atom or a substituent defined in the description; A is as defined in the description; n represents an integer from 0 to 4, inclusive; and pharmaceutically acceptable salts thereof. The compounds are the ligands of PPAR-gamma receptor and are useful as medicaments.Type: GrantFiled: January 12, 2006Date of Patent: December 18, 2007Assignee: Adamed Sp. z.o.oInventors: Zbigniew Majka, Katarzyna Ewa Rusin, Dominik Daniel Kludkiewicz, Krzysztof Kurowski, Katarzyna Joanna Matusiewicz, Tomasz Stawinski, Daniel Sulikowski, Piotr Kowalczyk
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Patent number: 7309792Abstract: Caspase activity and apoptosis are promoted using active, dimeric Smac peptide mimetics of the general formula M1-L-M2, wherein moieties M1 and M2 are monomeric Smac mimetics and L is a covalent linker. Target cancerous or inflammatory cells are contacted with an effective amount of an active, dimeric Smac mimetic, and a resultant increase in apoptosis of the target cells is detected. The contacting step may be effected by administering to a pharmaceutical composition comprising a therapeutically effective amount of the dimeric mimetic, wherein the individual may be subject to concurrent or antecedent radiation or chemotherapy for treatment of a neoproliferative pathology.Type: GrantFiled: March 1, 2005Date of Patent: December 18, 2007Assignee: Board of Regents, The University of Texas SystemInventors: Patrick G. Harran, Xiaodong Wang, Jef K. De Brabander, Lin Li, Ranny Mathew Thomas, Hidetaka Suzuki
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Patent number: 7309793Abstract: The present invention relates to benzopyran derivatives substituted with a benzimidazole derivative, or pharmaceutically acceptable salts thereof, a preparation method of the same and pharmarceutical compositions containing them. Benzopyran derivatives substituted with a benzimidazole derivative, represented in Formula (1), have the function of protecting heart from ischemia-reperfusion without side effect like vasodilation, so that a pharmaceutical composition containing benzopyran derivatives substituted with a benzimidazole derivative or pharmaceutically acceptable salts thereof of the present invention as an effective ingredient can be effectively used for the protection of tissues influenced by ischemia-reperfusion, for example, for the protection of heart, nervous cells, brain, retinal cells, storage organs, etc. and for the treatment of diseases caused by ischemia-reperfusion.Type: GrantFiled: May 28, 2004Date of Patent: December 18, 2007Assignee: Dongbu Hannong Chemical Co., Ltd.Inventors: Hong Lim, Dong Ha Lee, Sun Ok Kim, Sung-Eun Yoo, Kyu Yang Yi, Sun Kyung Lee, Jee Hee Suh, Nak Jeong Kim, Sun Kyung Hwang, Tae Mi Kim, Byung Ho Lee, Ho-Won Seo
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Patent number: 7309794Abstract: Episulfide compounds useful as starting materials of optical materials are stably stored for a long period of time at a temperature ranging from their solidifying points to 20° C., preventing the production or precipitation of polymers and the yellowing.Type: GrantFiled: November 7, 2000Date of Patent: December 18, 2007Assignee: Mitsubishi Gas Chemical Co., Inc.Inventors: Akikazu Amagai, Yuichi Yoshimura, Motoharu Takeuchi, Atsuki Niimi, Hiroshi Horikoshi, Masanori Shimuta, Nobuyuki Uemura
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Patent number: 7309795Abstract: Improved citral derivatives, and fragrances and flavorings including the derivatives, that have a longer useful shelf life than citral and/or fragrances and flavorings including citral, are disclosed. In particular, the derivatives maintain the fragrance characteristics of citral, while lowering the allergic properties, and lemony flavors and fragrances with a longer shelf-life than citral, are disclosed. Also disclosed are methods of making the derivatives, and articles of manufacture including the derivatives. In one embodiment, the derivatives are prepared by replacing one or more double bonds in citral with a cyclopropyl group, which can be unsubstituted, or substituted with one or two lower alkyl, preferably methyl groups. The alkyl groups can optionally be substituted, for example, with electron donating groups, electron with drawing groups, groups which increase the hydrophilicity or hydrophobocity, and the like.Type: GrantFiled: June 16, 2004Date of Patent: December 18, 2007Inventor: Luca Turin
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Patent number: 7309796Abstract: A process for the preparation of diaminocyclohexane-platinum(II)-dicarboxylates has the following steps: B Conversion of K2PtX2 with 1,2-diaminocyclohexane (DACH) to (2): C Conversion of (2) with too little quantity of silver salt AgnA to (3): and removal of the resulting AgX precipitate. D Conversion of (3) with a dicarboxylate to (1): F Isolation of the product (1), wherein R1 and R2 together form a dicarboxylato group, X stands for Cl or I, A for a 1-2-valent anion of a mineral acid, and n stands for 1 or 2.Type: GrantFiled: February 3, 2005Date of Patent: December 18, 2007Assignee: W.C. Heraeus GmbHInventors: Andreas Pepels, Holger Rauter, Ralf-Dieter Schnebeck, Friedrich Wissmann