Patents Issued in June 4, 2019
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Patent number: 10308709Abstract: Disclosed herein are antibodies and methods of using said antibodies to detect Golgi protein 73 (GP73) and fucosylated GP73 in a sample.Type: GrantFiled: October 11, 2016Date of Patent: June 4, 2019Assignee: Abbott LaboratoriesInventors: Bailin Tu, Robert N. Ziemann, Bryan C. Tieman, Philip M. Hemken, Carol S. Ramsay, Carolyn J. Strobel, David J. Hawksworth, Larry G. Birkenmeyer, Cheng Zhao, Susan E. Brophy, Barry L. Dowell, Anthony S. Muerhoff
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Patent number: 10308710Abstract: The invention provides humanized anti-human Tau(pS422) antibodies and methods of using the same.Type: GrantFiled: December 22, 2016Date of Patent: June 4, 2019Assignee: HOFFMANN-LA ROCHE INC.Inventors: Fiona Grueninger, Guy Georges, Olaf Mundigl, Michael Schraeml, Bernd Bohrmann, Ulrich Goepfert, Joerg Benz, Hubert Kettenberger
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Patent number: 10308711Abstract: Disclosed herein are monospecific HCAb antibodies with antigen-binding specificity to PDGF and bispecific antibodies with antigen-binding specificities to PDGF-2 and VEGF or to PDGF and ANG-2.Type: GrantFiled: August 11, 2016Date of Patent: June 4, 2019Assignee: Allergan, Inc.Inventors: Yanbin Liang, Daniel W. Gil
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Patent number: 10308712Abstract: The present invention relates to novel antibodies and fragments thereof that binds cannabinoid 1 (CB1) receptor. The antibodies and fragments thereof as disclosed herein include humanized antibodies that bind CB1 receptor. The invention also includes uses of the antibodies for treating a disease or disorder responsive to antagonism or agonism of the CB1 receptor.Type: GrantFiled: March 27, 2015Date of Patent: June 4, 2019Assignee: BIRD ROCK BIO, INC.Inventors: Anke Kretz-Rommel, Lei Shi, Roger Ferrini, Teddy Yang, Fei Xu, Brian Campion
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Patent number: 10308713Abstract: The present disclosure provides antibodies and antibody drug conjugates that bind human CS1 and their uses to treat subjects diagnosed with a plasma cell neoplasm, for example, multiple myeloma.Type: GrantFiled: November 21, 2017Date of Patent: June 4, 2019Assignee: AbbVie Biotherapeutics Inc.Inventors: Kurt C. Gish, Han K. Kim, Louie Naumovski
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Patent number: 10308714Abstract: The disclosure provides a method for immunotherapy of a subject afflicted with cancer, comprises administering to the subject a composition comprising a therapeutically effective amount of an antibody that inhibits signaling from the PD-1/PD-L1 signaling pathway. This disclosure also provides a method for immunotherapy of a subject afflicted with cancer comprising selecting a subject that is a suitable candidate for immunotherapy based on an assessment that the proportion of cells in a test tissue sample from the subject that express PD-L1 on the cell surface exceeds a predetermined threshold level, and administering a therapeutically effective amount of an anti-PD-1 antibody to the selected subject. The invention additionally provides rabbit mAbs that bind specifically to a cell surface-expressed PD-L1 antigen in a FFPE tissue sample, and an automated IHC method for assessing cell surface expression in FFPE tissues using the provided anti-PD-L1 Abs.Type: GrantFiled: June 29, 2018Date of Patent: June 4, 2019Assignee: Bristol-Myers Squibb CompanyInventors: John P. Cogswell, Stacie M. Goldberg, Ashok K. Gupta, Maria Jure-Kunkel, Xi-Tao Wang, Jon M. Wigginton
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Patent number: 10308715Abstract: To provide a method of detecting abnormal bone metabolism by using a gene strongly expressed in an osteoclast; a method of screening a compound having a therapeutic and/or preventive effect on abnormal bone metabolism; and a pharmaceutical composition for treating and/or preventing abnormal bone metabolism. Provision of a method of detecting abnormal bone metabolism by using the expression of human Siglec-15 gene as an index; a pharmaceutical composition containing an antibody which specifically recognizes human Siglec-15 and has an activity of inhibiting osteoclast formation; and the like.Type: GrantFiled: October 11, 2017Date of Patent: June 4, 2019Assignee: DAIICHI SANKYO COMPANY, LIMITEDInventors: Yoshiharu Hiruma, Eisuke Tsuda
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Patent number: 10308716Abstract: The invention relates to a method for producing polyclonal antibodies against an antigenic target protein which comprises inducing an immune response in a host by applying an immunogenic composition comprising membrane vesicles incorporating said antigenic target protein to said host and obtaining antibodies against said target protein from the host's serum.Type: GrantFiled: September 24, 2014Date of Patent: June 4, 2019Assignee: Fraunhofer-Gesellschaft zur Foerderung der angewandten Forschung e. V.Inventors: Marlitt Stech, Katja Hanack, Katrin Messerschmidt, Stefan Kubick
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Patent number: 10308717Abstract: The invention provides compositions and methods for treating diseases associated with expression of EGFRvIII. The invention also relates to chimeric antigen receptor (CAR) specific to EGFRvIII, vectors encoding the same, and recombinant T cells comprising the anti-EGFRvIII CAR. The invention also includes methods of administering a genetically modified T cell expressing a CAR that comprises an anti-EGFRvIII binding domain.Type: GrantFiled: June 15, 2016Date of Patent: June 4, 2019Assignees: Novartis AG, The Trustees of the University of Pennsylvania, University of Pittsburgh—of The Commonwealth System of Higher EducationInventors: Jennifer Brogdon, Laura Alexandra Johnson, Carl H. June, Andreas Loew, Marcela Maus, John Scholler, Hideho Okada
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Patent number: 10308718Abstract: The present disclosure is generally directed to compositions that include antibodies, e.g., monoclonal, chimeric, humanized antibodies, antibody fragments, etc., that specifically bind on or more epitopes within a Sortilin protein, e.g., human Sortilin or a mammalian Sortilin, and use of such compostions in preventing, reducing risk, or treating an individual in need thereof.Type: GrantFiled: January 10, 2018Date of Patent: June 4, 2019Assignee: ALECTOR LLCInventors: Arnon Rosenthal, Tina Schwabe, Michael Kurnellas, Robert Pejchal, Anthony B. Cooper
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Patent number: 10308719Abstract: Provided are specific binding molecules, or fragments thereof, that bind to an epitope of IL13R?2, a receptor polypeptide preferentially found on the surface of cancer cells rather than healthy cells. Exemplary specific binding molecules are bispecific binding molecules that comprise a fragment of an IL13R?2 binding molecule and a peptide providing a second function providing a signaling function of the signaling domain of a T cell signaling protein, a peptide modulator of T cell activation, or an enzymatic component of a labeling system. Also provided are polynucleotides encoding such a specific binding molecule (e.g., bispecific binding molecule), vectors, host cells, pharmaceutical compositions and methods of preventing, treating or ameliorating a symptom associated with a cancer disease such as a solid tumor disease (e.g., glioblastoma multiforme).Type: GrantFiled: January 26, 2016Date of Patent: June 4, 2019Assignee: THE UNIVERSITY OF CHICAGOInventors: Irina V. Balyasnikova, Maciej S. Lesniak
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Patent number: 10308720Abstract: The disclosure relates generally to molecules that specifically engage death receptor 5 (DR5), a member of the TNF receptor superfamily (TNFRSF). More specifically the disclosure relates to multivalent and multispecific molecules that bind at least DR5.Type: GrantFiled: July 18, 2016Date of Patent: June 4, 2019Assignee: Inhibrx, Inc.Inventors: John C. Timmer, Kyle S. Jones, Amir S. Razai, Abrahim Hussain, Katelyn M. Willis, Quinn Deveraux, Brendan P. Eckelman
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Patent number: 10308721Abstract: Anti-DLL3 antibodies and antibody drug conjugates for use in the diagnosis and treatment of melanoma.Type: GrantFiled: February 23, 2015Date of Patent: June 4, 2019Assignee: AbbVie Stemcentrx LLCInventors: Samuel Williams, Laura Saunders, Kathryn A Loving
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Patent number: 10308722Abstract: The present disclosure is directed to a method of treating multiple myeloma or non-hodgkins lymphoma with a pharmaceutical composition comprising an anti-CD38 antibody in combination with thalidomide, lenalidomide, or pomalidomide.Type: GrantFiled: August 7, 2017Date of Patent: June 4, 2019Assignee: MORPHOSYS AGInventors: Lisa Rojkjaer, Rainer Boxhammer, Jan Endell, Mark Winderlich, Christofer Samuelsson
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Patent number: 10308723Abstract: The invention relates to antibody molecules having specificity for antigenic determinants of both IL-17A and IL-17F, therapeutic uses of the antibody molecules and methods for producing said antibody molecules.Type: GrantFiled: April 7, 2017Date of Patent: June 4, 2019Assignee: UCB Biopharma SPRLInventors: Ralph Adams, Andrew George Popplewell, Stephen Edward Rapecki
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Patent number: 10308724Abstract: The subject matter of the invention is dextrans which have between 95% and 99% of ?-1,6 glucosidic bonds, a weight-average molar mass Mw at least equal to 0.7×109 g.mol?1, and a dispersity index D of between 1.3 and 3. The invention also relates to a dextran saccharase which makes it possible to produce such dextrans, and to a method for producing said dextrans.Type: GrantFiled: June 19, 2015Date of Patent: June 4, 2019Assignees: INSTITUT NATIONAL DES SCIENCES APPLIQUEES TOULOUSE, INSTITUT NATIONAL DE LA RECHERCHE AGRONOMIQUE, CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE, UNIVERSITE DE BORDEAUX, INSTITUT POLYTECHNIQUE DE BORDEAUXInventors: Marlène Vuillemin, Marion Claverie, Claire Moulis, Magali Remaud-Simeon, Florent Grimaud, Pierre Monsan, Agnès Sabate, Catherine Garnier, Marguerite Dols-Lafargue, Patrick Lucas
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Patent number: 10308725Abstract: A chelate compound wherein a chelate-forming moiety is attached to a base compound having an amino group and at least a part of the amino group is in the form of a halide salt. A specific example of the halide salt is hydrochloride. As the base compound, a chitosan having a glucosamine skeleton is preferred. Also, chitosan beads are usable. The chelate compound is produced by reacting the base compound having an amino group with an aldehyde group of an aromatic cyclic compound, aromatic cyclic compound having at least a functional group capable of forming a chelate and the aldehyde group, to form a Schiff base, reducing the Schiff base with a reducing agent and then treating with a hydrohalogenic acid (hydrochloric acid).Type: GrantFiled: September 29, 2015Date of Patent: June 4, 2019Assignee: DISEASE ADSORPTION SYSTEM TECHNOLOGIES CO., LTD.Inventor: Yuzo Nishida
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Patent number: 10308726Abstract: The invention provides a crosslinked polymer, a hydrogel, a water-based fracturing fluid comprising the same, and methods of making and using thereof. The crosslinked polymer of the invention is represented by formula (I), wherein * denotes a combining site with a polymer starting material and *? denotes an optional combining site with the polymer starting material, wherein the combining sites denoted by * and *? may be located in the same polymer molecule, or in different polymer molecules, but there are at least two combining sites located in different polymer molecules; X1 and X2, which may be the same or different, are independently an oxy (—O—) or imino (—NH—) group; X3 is an oxy (—O—) or imino (—NH—) group when *? denotes a combining site with the polymer starting material, or X3 is a halogen, NH2 or OH when *? isn't a combining site with the polymer starting material.Type: GrantFiled: May 26, 2016Date of Patent: June 4, 2019Inventor: Yuan Yi
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Patent number: 10308727Abstract: An object of the present invention is to provide a simple measure which can suppress freshness deterioration of a myoglobin-containing food. The present invention relates to a myoglobin-containing food freshness deterioration suppressing material for suppressing freshness deterioration of a myoglobin-containing food, comprising: a substrate comprising a polymer; and an antioxidant with which at least a part of the surface of the substrate is covered, and/or an antioxidant supported in a layer forming at least a part of the surface of the substrate; wherein 0.01 g/m2 or more and 20 g/m2 or less of the antioxidant is included relative to the area of the part in which the antioxidant is present, of the surface of the substrate.Type: GrantFiled: May 27, 2015Date of Patent: June 4, 2019Assignee: SEKISUI PLASTICS CO., LTD.Inventors: Naoki Michihata, Shinji Ishida, Takenori Terada, Atsushi Takahara, Masahiko Ariji
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Patent number: 10308728Abstract: A method of production of a modified conjugated diene rubber including a first step of polymerizing a monomer containing at least a conjugated diene compound by using a polymerization initiator in an inert solvent so as to obtain a conjugated diene polymer having an active end, and a second step of causing a compound represented by a following formula (1) to react with the active end of the conjugated diene polymer having an active end: wherein, in formula (1), each of R1 to R3 independently is an alkyl group having 1 to 4 carbon atoms, R4 is a hydrocarbon group containing an aromatic ring and having 6 to 10 carbon atoms, R5 is an alkyl group having 1 to 6 carbon atoms, and “n” is an integer of 0 to 10.Type: GrantFiled: March 27, 2015Date of Patent: June 4, 2019Assignee: ZEON CORPORATIONInventors: Satoshi Anezaki, Takeshi Sugimura, Hidenori Yamagishi
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Patent number: 10308729Abstract: A process for separating components of a reactor off gas is provided. A related reactor system is also provided. The reactor system may include a high pressure tubular reactor and/or an autoclave reactor and may be used for the production polyolefin polymers.Type: GrantFiled: April 5, 2016Date of Patent: June 4, 2019Assignee: ExxonMobil Chemical Patents Inc.Inventor: Paul J. Clymans
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Patent number: 10308730Abstract: The present invention relates to an in situ preparation of a redox initiated bimorphological aqueous dispersion of first polymer particles with protuberating phosphorus acid cores and second polymer particles without protuberating cores. The method provides a more efficient way of making compositions for pigmented coating formulations.Type: GrantFiled: September 13, 2017Date of Patent: June 4, 2019Assignee: Rohm and Haas CompanyInventors: James C. Bohling, Arnold S. Brownell, Wei Gao
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Patent number: 10308731Abstract: A method for feeding an antistatic compound to a polymerization reactor comprising the steps of: a) dispersing, under mixing conditions, a catalyst powder and an antistatic compound in an oil, so as to form a suspension of catalyst powder and antistatic compound in said oil; b) successively adding, under mixing conditions, a molten thickening agent to said suspension from step a), while maintaining said suspension at a temperature such that said thickening agent solidifies on contact with said suspension; c) transferring the product obtained from b) to a polymerization reactor.Type: GrantFiled: September 26, 2011Date of Patent: June 4, 2019Assignee: Basell Polyolefine GmbHInventors: Pietro Baita, Paolo Ferrari, Ines Mingozzi, Lorella Pedriali, Maria Di Diego, Roberta Pica
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Patent number: 10308732Abstract: The purpose of the invention is to provide: a package for EVOH resin pellets which is capable of providing the EVOH resin pellets almost free from powder even in a case where the package contains the powder generated therein during transportation or the like after shipment; and EVOH resin pellets contaminated with very small amount of the powder in a case where a user uses the EVOH resin pellets as a molding material. A package, where pellets each having a substantially circular or oval cross-section are packed in a packaging container whose inner surface has a surface resistivity of 1.0×1014? or more, is capable of providing pellets to which 0.8 wt % or less of powder adhered relative to the weight of the pellets.Type: GrantFiled: July 21, 2015Date of Patent: June 4, 2019Assignee: THE NIPPON SYNTHETIC CHEMICAL INDUSTRY CO., LTD.Inventor: Ikko Matsui
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Patent number: 10308733Abstract: Disclosed herein is a method comprising the steps of: a) producing a hydrocarbon stream from syngas via a Fischer-Tropsch reaction, wherein the hydrocarbon stream comprises a first C2 hydrocarbon stream comprising ethane and a first ethylene product; b) separating at least a portion of the first C2 hydrocarbon stream from the hydrocarbon stream; c) separating at least a portion of the first ethylene product from the first C2 hydrocarbon stream, thereby producing a second C2 hydrocarbon stream; d) converting at least a portion of the ethane in the second C2 hydrocarbon stream to a second ethylene product; and e) producing polyethylene from at least a portion of the second ethylene product.Type: GrantFiled: February 16, 2016Date of Patent: June 4, 2019Assignee: SABIC GLOBAL TECHNOLOGIES B.V.Inventors: Talal Al-Shammari, Khalid Karim, Zeeshan Nawaz, Abdullah Turki Al-Jaloud, Shehzada Khurram, Ali Al-Hammad, Mubarik Ali Bashir, Labeeb Chaudhary Ahmed, Saud Al-Khudeer, Thabet Al-Qahtani
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Patent number: 10308734Abstract: Catalyst components component for the (co)polymerization of olefins CH2?CHR, in which R is a hydrocarbyl radical with 1-12 carbon atoms, optionally in mixture with ethylene, comprising Ti, Mg, Zn, Cl, and an electron donor compound characterized by the fact that more than 50% of the titanium atoms are in the +4 valence state, and that the amount of Zn ranges from 0.1 to 4% by weight based on then total weight of said solid catalyst component.Type: GrantFiled: September 25, 2013Date of Patent: June 4, 2019Assignee: Basell Poliolefine Italia S.r.l.Inventors: Simona Guidotti, Simona Esposito, Dario Liguori, Giampiero Morini, Fabrizio Piemontesi, Gianni Vitale
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Patent number: 10308735Abstract: A material for an organic light-emitting device, the material including a repeating unit represented by Formula 1: wherein, in Formula 1, R1, A, and X1 are the same as described in the specification.Type: GrantFiled: December 17, 2015Date of Patent: June 4, 2019Assignee: SAMSUNG ELECTRONICS CO., LTD.Inventors: Masashi Tsuji, Koji Hasegawa, Makoto Taguchi
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Patent number: 10308736Abstract: Metallocene-catalyzed polyethylene polymers and articles made therefrom are provided.Type: GrantFiled: August 4, 2016Date of Patent: June 4, 2019Assignee: ExxonMobil Chemical Patents Inc.Inventors: Etienne R. H. Lernoux, Wen Li
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Patent number: 10308737Abstract: The present invention deals with a process for polymerizing ethylene in the presence of an olefin polymerization catalyst comprising titanium, magnesium and halogen in at least one polymerization stage where ethylene is polymerized in slurry, the process comprising treating the polymerization catalyst in a pre-treatment step by polymerizing an olefin on the polymerization catalyst so that the ratio of the weight of the olefin polymer to the weight of the original solid catalyst component is from 0.1 to 10 g/g and using the pre-treated catalyst in the production of ultra-high molecular weight polyethylene.Type: GrantFiled: September 29, 2015Date of Patent: June 4, 2019Assignee: BOREALIS AGInventors: Ravindra Tupe, Pernilla Fagerstolt
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Patent number: 10308738Abstract: The present disclosure relates to a plant for performing polymerization, such as the polymerization of ethylene, having a recycle connection with two or more cooling channels arranged in parallel, a process for polymerization and downstream processes, and a plant for polymerization, comprising the following plant components in fluid communication: a) A reactor with an inlet side and an outlet side; b) A recycle connection positioned in fluid communication between the outlet side of the reactor and the inlet side of the reactor; wherein the recycle connection comprises two or more cooling channels arranged in parallel.Type: GrantFiled: June 14, 2016Date of Patent: June 4, 2019Assignee: Basell Polyolefine GmbHInventors: Christoph Wolf, Andre-Armand Finette, Andrei Gonioukh, Dieter Littmann, Thomas Herrmann, Georg Groos
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Patent number: 10308739Abstract: The present invention provides a production method of polyvinyl chloride by suspension polymerization and a feeding apparatus. This method comprises: Step 1: injecting a vinyl chloride monomer and water at 25-98° C. into a reaction vessel to obtain a water suspension, closing the reaction kettle, repeatedly and cyclically performing vacuum-pumping and cleansing with nitrogen, stirring and evacuating oxygen in the reaction kettle; Step 2: adding a first suspension agent and a second suspension agent into the reaction kettle, and then adding a nanopowder and an initiator composite, to carry out the polymerization reaction; Step 3: adding cold water to terminate the polymerization reaction upon the pressure in the reaction kettle is reduced to 3.5 bar or less; Step 4: evacuating and vacuumizing the reaction kettle, and then filtering, washing and drying the resulted polymer, to obtain polyvinyl chloride. The present invention also provides a feeding apparatus used for the above production method.Type: GrantFiled: February 11, 2015Date of Patent: June 4, 2019Assignee: Amos Chemicals Inc.Inventors: Yuhai Gao, Xianzhen Zhuo
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Patent number: 10308740Abstract: A low molecular weight copolymer is provided comprising propylene and ethylene, wherein the low molecular weight copolymer has a softening point in the range of 90 to 140° C., wherein the low molecular weight copolymer has a needle penetration that is equal to y, wherein y is defined by the following formula: y??0.000000262249x6+0.000172031278x5?0.046669720165x4+6.701746779438x3?537.286013331959x2+22,802.983472587x?400,204.018086126 wherein x in the above formula is the softening point of the low molecular weight copolymer, and wherein the low molecular weight copolymer has a molecular weight polydispersity index of about 3 to about 25, a crystallinity of about 18% to about 30% measured by X-Ray diffraction, and a Brookfield viscosity in the range of about 1000 to about 4000 cp at 190° C. measured by ASTM D 3236. Adhesive compositions comprising the low molecular weight copolymer are also provided.Type: GrantFiled: August 23, 2017Date of Patent: June 4, 2019Assignee: Eastman Chemical CompanyInventors: Mutombo Joseph Muvundamina, Gary Robert Robe, Timothy Williams, Andrea Gail Hagood, Dhiraj Sudesh Sood, Marc Stacey Somers, Bennett H. Novak, Puthenkovilakom Rajesh Raja, Raymond Prescott Cottle
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Patent number: 10308741Abstract: Mono- and multi-layer films comprising a polyethylene composition which comprises the reaction product of ethylene and optionally one or more alpha olefin comonomers in the presence of a catalyst composition comprising a multi-metallic procatalyst via a solution polymerization process in at least one reactor; wherein said polyethylene composition is characterized by one or more of the following properties: a melt index, I2, measured according to ASTM D 1238 (2.16 kg@190° C.), from 0.1 to 5 g/10 min; density, measured according to ASTM D-792, from 0.910 to 0.935 g/cc; melt flow ratio, I10/I2, wherein I10 is measured according to ASTM D1238 (10 kg@190° C.), from 6 to 7.4; and molecular weight distribution, (Mw/Mn) from 2.5 to 3.5 are provided. Also provided are articles made from the mono- and/or multi-layer films.Type: GrantFiled: February 7, 2014Date of Patent: June 4, 2019Assignee: DOW GLOBAL TECHNOLOGIES LLCInventors: Mehmet Demirors, Teresa P. Karjala, Nilesh R. Savargaonkar, Rajen M. Patel, Sylvie Desjardins
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Patent number: 10308742Abstract: Polymers, and systems and methods for making and using the same are described herein. A polymer includes ethylene and at least one alpha olefin having from 4 to 20 carbon atoms. The polymer is formed by a trimmed catalyst system including a supported catalyst including bis(n-propylcyclopentadienyl) hafnium (R1)(R2) and a trim catalyst comprising meso-O(SiMe2Ind)2Zr(R1)(R2), wherein R1 and R2 are each, independently, methyl, chloro, fluoro, or a hydrocarbyl group.Type: GrantFiled: February 10, 2015Date of Patent: June 4, 2019Assignee: Univation Technologies, LLCInventors: Ching-Tai Lue, Francis C. Rix, Timothy M. Boller, Garth R. Giesbrecht, Mark G. Goode, Sun-Chueh Kao, Dongming Li, R. Eric Pequeno, Daniel P. Zilker, Jr.
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Patent number: 10308743Abstract: A copolymer is based on ?-?-unsaturated monocarboxylic acid, wherein the copolymer has a molar mass <100 000 g/mol. A process of preparing the copolymer compound includes mixing a copolymer in a melt with an impact modifier under action of shearing forces, a proportion of copolymer and impact modifier being selected preferably such that the copolymer forms a continuous phase and the impact modifier forms a discontinuous phase.Type: GrantFiled: October 2, 2017Date of Patent: June 4, 2019Assignee: BellandTechnology AGInventors: Juan-Carlos Ruggieri, Herbert Leder, Frank Osan
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Patent number: 10308744Abstract: This invention relates to polymer particles, a process for their preparation, electrophoretic fluids comprising such particles, and electrophoretic display devices comprising such fluids.Type: GrantFiled: May 20, 2014Date of Patent: June 4, 2019Assignees: Merck Patent GmbH, The Queen's University of BelfastInventors: Louise D. Farrand, Nils Greinert, Jonathan H. Wilson, Thomas Bauer, Claire Topping, Sarah Norman
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Patent number: 10308745Abstract: A copolymer has blood compatibility and antithrombotic properties of greatly suppressing protein adhesion to be usable even when in contact with a biological component such as blood for a long period of time, and a medical device uses the copolymer. The copolymer is characterized by including a hydrophilic unit and a hydrophobic unit, wherein the hydrophobic unit contains at least one type of a carboxylic acid vinyl unit, and the number of carbon atoms at the terminal of a side chain of the carboxylic acid vinyl unit is 2-7.Type: GrantFiled: March 15, 2016Date of Patent: June 4, 2019Assignee: Toray Industries, Inc.Inventors: Suguru Ushiro, Hiroshi Takahashi, Yoshiyuki Ueno
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Patent number: 10308746Abstract: Disclosed is a conjugated diene polymer comprising a conjugated diene as a monomeric unit. The conjugated diene polymer is obtained by a polymerization reaction in a reaction solution comprising a conjugated diene, at least one compound selected from the group consisting of limonene, terpinene, and terpinolene, and an organoalkali metal compound as a polymerization initiator. Mz/Mn is 1.7 or more and 4.0 or less, when Mz is a Z-average molecular weight of the conjugated diene polymer, Mn is a number average molecular weight of the conjugated diene polymer, and the Z-average molecular weight and the number average molecular weight are values in terms of polystyrene by gel permeation chromatography.Type: GrantFiled: September 9, 2015Date of Patent: June 4, 2019Assignee: SUMITOMO CHEMICAL COMPANY, LIMITEDInventor: Koichiro Tajima
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Patent number: 10308747Abstract: To obtain a modified polypropylene-based resin which shows specific viscoelasticity and from which an expanded sheet having a low open cell ratio can be obtained.Type: GrantFiled: September 29, 2015Date of Patent: June 4, 2019Assignee: SEKISUI PLASTICS CO., LTD.Inventors: Kohei Tazumi, Eiji Fukuyama, Michihiro Hayashi, Shota Endo, Masashi Yamashita
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Patent number: 10308748Abstract: Click reactions may be used to bond polymers to lignin by taking advantage of lignin's terminal hydroxyl and thiol groups via an alkyne-azide click reaction or a thiol-alkene or thiol-alkyne click reaction. By selecting functional polymers, these methods may be used to synthesize lignin-containing polymer materials with an array of different properties, such as self-healing polymers.Type: GrantFiled: June 6, 2017Date of Patent: June 4, 2019Assignee: Florida State University Research Foundation, Inc.Inventor: Hoyong Chung
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Patent number: 10308749Abstract: A process for producing a modified polyphenylene ether resin having a purity of more than 99.4%, comprising steps of graft modification, water rinse, and extraction as well as phase splitting, is disclosed that step of separating out powder during purification is no needed, and the solvent for use in performing dissolving of or/and extraction of polyphenylene ether resin can be recycled for future use, so that the manufacturing process is simple and uses less solvent as compared to the prior art, and further helps to conserve resources and is environmentally friendly.Type: GrantFiled: August 10, 2017Date of Patent: June 4, 2019Assignee: NAN YA PLASTICS CORPORATIONInventors: Te-Chao Liao, Ying-Te Huang, Hao-Sheng Chen, Hung-Yi Chang, Chuan Chou, Jui-Jung Lin Lai
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Patent number: 10308750Abstract: A polymerizable composition that is suitable to produce a molded product that can suppress cracking and dimensional change caused by a high-temperature heat history with a high refractive index of a cured product maintained. A polymerizable composition including (a) 100 parts by mass of the specific reactive silsesquioxane compound, (b) 10 to 500 parts by mass of the specific fluorene compound, a cured product obtained by the polymerizable composition and a material for a high-refractive index resin lens including the polymerizable composition.Type: GrantFiled: February 26, 2015Date of Patent: June 4, 2019Assignee: NISSAN CHEMICAL INDUSTRIES, LTD.Inventors: Kentaro Ohmori, Takehiro Nagasawa
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Patent number: 10308751Abstract: A block copolymer, a method for preparing a block copolymer, a resin composition, and a film are provided. The block copolymer can be useful in inhibiting complete separation of the hard segment even under a severe high-temperature condition by increasing the chemical cross-linking density around the hard segment without causing an increase in glass transition temperature of the hard segment, thereby maintaining high-temperature durability.Type: GrantFiled: September 1, 2014Date of Patent: June 4, 2019Assignee: LG Chem, Ltd.Inventors: Jeong Ae Yoon, Su Jeong Kim, Sung Soo Yoon, Min Ki Lee, Kee Young Kim, Han Na Chi, Sang Hyun Hong, Jeong Sik Bae
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Patent number: 10308752Abstract: A block copolymer includes a polystyrene block including a styrene unit, and a polyalkyl (meth)acrylate block including an alkyl (meth)acrylate unit. The block copolymer includes an organic group that is bound to at least one end of a main chain of the block copolymer and that comprises a hetero atom. A polymerization initiation end of the block copolymer includes a structure derived from an alkyl lithium. The organic group included in the block copolymer includes a nitrogen atom, a sulfur atom, a phosphorus atom, a tin atom, or a combination thereof, or is represented by formula (1). R1 represents a single bond or a divalent organic group having 1 to 30 carbon atoms; and R2 represents a hydrogen atom, an aliphatic linear hydrocarbon group having 1 to 30 carbon atoms, an alicyclic hydrocarbon group having 3 to 30 carbon atoms, or the like.Type: GrantFiled: April 5, 2017Date of Patent: June 4, 2019Assignee: JSR CORPORATIONInventors: Yuji Namie, Shinya Minegishi, Tomoki Nagai, Takuo Sone
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Patent number: 10308753Abstract: An ionic diol has formula wherein R1 represents an alkyl group having from 6 to 18 carbon atoms; R2 and R3 independently represent alkyl groups having from 1 to 4 carbon atoms; R4 represents an alkylene group having from 2 to 8 carbon atoms; and R5 represents an alkylene group having from 1 to 8 carbon atoms. Antistatic polymers are formed by copolymerization of monomers including a diisocyanate, an ionic diol, a polyether diol, and at least one non-ionic diols. Methods of making the antistatic polyurethanes are also disclosed.Type: GrantFiled: December 8, 2015Date of Patent: June 4, 2019Assignee: 3M Innovative Properties CompanyInventors: Yu Yang, Jason M. Kehren, Yongshang Lu, Suresh S. Iyer, William M. Lamanna, Thomas P. Klun, Jeffrey A. Peterson
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Patent number: 10308754Abstract: An isocyanate reactive composition comprising At least one component selected from the group consisting of a polyether polyol, a polyester polyol, a polyether polyamide and a polyester polyamide; one or more amine components, each of said amine components having a given structure. In some embodiments, the average number of nitrogen atoms of said amine components is in the range of 5 to 10.Type: GrantFiled: July 10, 2013Date of Patent: June 4, 2019Assignee: HUNTSMAN PETROCHEMICAL LLCInventors: Geert Lodewijk Dries, Robert Allison Grigsby, Jr., Ernest Lee Rister, Jr., Eugene P. Wiltz, Jr.
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Patent number: 10308755Abstract: The present invention provides a sheet-forming body containing a thiourethane bond-having compound and a thiol group-having compound, wherein, in an IR absorption spectrum thereof, the ratio of the peak intensity A of the absorption peak based on the carbonyl group in the thiourethane bond to the peak intensity B of the absorption peak based on the thiol group (A/B) is 20 or more and 250 or less. Using the sheet-forming body, rubber members, especially vulcanized rubber members can be strongly bonded, and the sheet-forming body and an adhesive sheet, which are excellent in handleability and workability, and a laminate produced by bonding rubber layers using the sheet-forming body are provided.Type: GrantFiled: March 31, 2015Date of Patent: June 4, 2019Assignee: BRIDGESTONE CORPORATIONInventors: Takenobu Ishihara, Shuyou Akama, Atsushi Hara
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Patent number: 10308756Abstract: Provided is a polymerizable composition for an optical material including (A) an amine having two or more secondary amino groups, (B) an isocyanate having two or more isocyanato groups, and (C) a thiol having three or more mercapto groups, in which the ratio (a/b) of the molar number a of amino groups in the amine (A) with respect to the molar number b of isocyanato groups in the isocyanate (B) is in the range of 0.10 to 0.60.Type: GrantFiled: July 7, 2015Date of Patent: June 4, 2019Assignee: MITSUI CHEMICALS, INC.Inventor: Nobuo Kawato
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Patent number: 10308757Abstract: A two-component curable epoxy resin system having an epoxy component containing a unique combination of two or more epoxy resins with at least one of the epoxy resins being an epoxy novolac type resin. The composite made from such resin system exhibits high glass transition temperature.Type: GrantFiled: November 3, 2015Date of Patent: June 4, 2019Assignee: Dow Global Technologies LLCInventors: Timothy A. Morley, Rainer Koeniger, Nebojsa Jelic, Rolf Hueppi, Zeljko Sikman
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Patent number: 10308758Abstract: Provided are a filling component useful for the production of a thin, low-profile three-dimensional integrated semiconductor device via a COW process, and a curable composition for the formation of the filling component. The filling component according to the present invention for three-dimensional mounting of semiconductor elements is used to fill gaps between laterally adjacent semiconductor elements in the production of a three-dimensional integrated semiconductor device by stacking and integrating semiconductor elements. The filling component is a component that is polished and/or ground flat from the front side of semiconductor elements while gaps between the semiconductor elements are filled with the filling component.Type: GrantFiled: September 25, 2014Date of Patent: June 4, 2019Assignee: DAICEL CORPORATIONInventors: Hiroki Tanaka, Katsuhiro Nakaguchi