Abstract: The present invention provides novel methods of producing diphtheria toxin. In particular, the present invention provides novel methods of producing nontoxic forms of diphtheria toxin, e.g., CRM197. The present invention also provides novel compositions comprising diphtheria toxin or nontoxic forms of diphtheria toxin, e.g., CRM197.
Abstract: Polypeptide particles of the present invention are particles of a polypeptide derived from spider silk proteins, and have an average particle size of 1000 nm or less. A method for producing polypeptide particles of the present invention includes: a solution production step in which the polypeptide is dissolved in at least one solvent selected from the group consisting of DMSO, DMF, and these with an inorganic salt, so as to obtain a solution of the polypeptide; a step in which the solution produced in the solution production step is substituted with a water-soluble solvent so as to obtain an aqueous solution of the polypeptide; and a step in which the aqueous solution of the polypeptide is dried. Thereby, the present invention provides polypeptide particles suitable for application to a living body and capable of being applied to cosmetics, etc., while identifying the properties of the polypeptide particles, and a method for producing the same.
Abstract: A natural protein, specifically silk fibroin or sericin, is chemically modified such that it can be rendered photoactive, but which otherwise has similar structure and attributes as silk fibroin or sericin. This chemically modified silk conjugate can be patterned using radiant energy to produce patterned silk materials which may be used for a wide variety of applications such as making micro and nanoparticles of different shapes and functionalities for drug delivery, creating new forms of intricate 3D scaffolds for tissue engineering, and forming substrates for flexible bio-electronics.
Type:
Application
Filed:
January 31, 2014
Publication date:
December 31, 2015
Inventors:
Nicholas E. Kurland, Vamsi K. Yadavalli
Abstract: Methods are disclosed for increasing the yield and N-glycosylation site occupancy of paucimannose or complex N-glycans of recombinant glycoproteins produced in a recombinant host cell lacking dolichyl-P-Man:Man5GlcNAc2-PP-dolichyl alpha-1,3 mannosyltransferase (Alg3p) activity. In particular, the present invention provides recombinant host cells for producing recombinant glycoproteins that comprise a disruption of the expression of an OS-9 family gene in the host cell and which overexpress one or more Trypanosoma brucei STT3 proteins.
Abstract: H-NOX proteins are mutated to exhibit improved or optimal kinetic and thermodynamic properties for blood gas O2 delivery. The engineered H-NOX proteins comprise mutations that impart altered O2 or NO ligand-binding relative to the corresponding wild-type H-NOX domain, and are operative as physiologically compatible mammalian blood O2 gas carriers. The invention also provides pharmaceutical compositions, kits, and methods that use wild-type or mutant H-NOX proteins for the treatment of any condition for which delivery of O2 is beneficial.
Type:
Application
Filed:
September 17, 2014
Publication date:
December 31, 2015
Inventors:
Stephen P. L. CARY, Elizabeth M. BOON, Emily WEINERT, Jonathan A. WINGER, Michael A. MARLETTA
Abstract: The present invention relates to Norrin mutant polypeptides that inhibit or reduce angiogenesis in various tissues. Methods for synthesizing recombinant Norrin and Norrin mutant polypeptides are provided. Methods of inhibiting or reducing aberrant angiogenesis comprise contacting a tissue undergoing aberrant angiogenesis with a composition comprising an isolated Norrin C mutant polypeptide.
Abstract: A synergistic adjuvant is provided comprising synergistically effective amounts of at least one type 1 interferon and at least one CD40 agonist, wherein these moieties may be in the same or separate compositions. In addition, fusion proteins and DNA conjugates which contain a type 1 interferon/CD40 agonist/antigen combination are provided. The use of these compositions, protein and DNA conjugates as immune adjuvants for treatment of various chronic diseases such as HIV infection and for enhancing the efficacy of vaccines (prophylactic and therapeutic) is also provided.
Type:
Application
Filed:
July 1, 2015
Publication date:
December 31, 2015
Inventors:
Ross KEDL, Phillip J. Sanchez, Catherine Haluszczak
Abstract: The present invention provides peptide analogues of ?-MSH, comprising the amino acid sequence of human ?-MSH, or variants thereof, and having one or two linear amino acid probe(s) in the N- and/or C-terminal part of the peptide.
Abstract: This document provides aquaretic and natriuretic polypeptides. For example, this document provides polypeptides having aquaretic and/or natriuretic activities. In some cases, a polypeptide provided herein can have aquaretic and natriuretic activities, while lacking the ability to lower blood pressure. This document also provides methods and materials for inducing aquaretic and/or natriuretic activities within a mammal.
Abstract: The invention provides materials and methods for promoting weight loss or preventing weight gain and for treating diabetes and associated metabolic disorders. In particular, the invention provides novel glucagon analogue peptide compounds effective in such methods. The compounds may mediate their effect by having, for example, increased selectivity for the GLP-1 receptor compared to human glucagon.
Abstract: The present invention stems from the finding that the extracellular domain of CD31 proteins present on blood leukocytes is shed and released in the circulation as a soluble form of CD31. The invention relates to peptides corresponding to fragments of CD31 that inhibit T-cell response, and to their use in the treatment of thrombotic disorders such as atherothrombosis and autoimmune disorders.
Type:
Application
Filed:
July 27, 2015
Publication date:
December 31, 2015
Applicant:
INSERM (Institute National de la Sante et de la Recherche Medicale
Abstract: The present invention relates to polypeptides capable of modulating odorant receptor activation. In particular, the present invention provides polypeptides (e.g., type 3 muscarinic actetylcholine receptor M3) capable of enhancing odorant receptor activation. The present invention further provides assays for the detection of ligands specific for various odorant receptors. Additionally, the present invention provides methods of screening for polypeptide polymorphisms and mutations associated with odorant receptor activation (e.g., polymorphisms and mutations associated with muscarinic actetylcholine receptor polypeptides (e.g., M1, M2, M3, M4, M5)), as well as methods of screening for therapeutic agents, ligands, and modulators of such proteins.
Abstract: A stable fusion protein, wherein in solution, a majority of the fusion proteins are in the homo-hexamer form, which may be prepared for example as a CTLA4-FasL fusion protein.
Abstract: Described are polypeptides and their use for screening and drug discovery. More specifically, the disclosure provides chimeric polypeptides comprising a membrane protein, in particular a GPCR, fused to a binding domain, wherein the binding domain is directed against and/or specifically binds to the membrane protein. In particular, the chimeric polypeptides are single proteins wherein, in an intramolecular reaction, the binding domain stabilizes the membrane protein in a conformation of interest. Also provided are nucleic acid sequences encoding such chimeric polypeptides, cells capable of expressing such chimeric polypeptides as well as cellular compositions derived thereof. Also screening methods for compounds using the chimeric polypeptides.
Type:
Application
Filed:
January 30, 2014
Publication date:
December 31, 2015
Inventors:
Jan Steyaert, Toon Laeremans, Els Pardon
Abstract: The present invention relates to a recombinant Factor VIII molecule, wherein said molecule has reduced vWF binding capacity, and wherein said molecule is covalently conjugated with at least one side group.
Type:
Application
Filed:
September 11, 2015
Publication date:
December 31, 2015
Inventors:
Bernd Peschke, Mikael Kofod-Hansen, Jens Buchardt, Henning Ralf Stennicke, Henrik Oestergaard, Marianne Kjalke, Eva H. Norling Olsen, Olsen, Jens Jacob Hansen
Abstract: Disclosed are methods, compositions, and systems for transforming silkworms to produce spider silk and analogs of spider silk. In certain embodiments, the method may include inserting a DNA sequence coding for at least a portion of a spider silk fibroin polypeptide, or an analog of a spider silk fibroin polypeptide, positioned between at least a portion of the 5? and 3? ends of a silkworm fibroin gene to generate a fusion gene construct having a sequence that encodes for a polypeptide comprising both spider silk fibroin and silkworm silk fibroin sequences. In certain embodiments, the fused gene is able to replace a native gene present in the silkworm such that the transformed silkworm expresses a polypeptide comprising a spider silk fibroin polypeptide, or an analog thereof, and expresses significantly less of the native silkworm silk.
Abstract: Disclosed herein are immunoglobulin constructs comprising at least one immunoglobulin domain or fragment thereof; and a therapeutic polypeptide or derivative or variant thereof attached to or inserted into said immunoglobulin domain. Also provided are immunoglobulin constructs comprising a mammalian immunoglobulin heavy chain comprising at least a portion of a knob domain in the complementarity-determining region 3 (CDR3H) or fragment thereof; and a therapeutic polypeptide attached to or inserted into the CDR3H. Also provided are immunoglobulin constructs comprising a mammalian immunoglobulin heavy chain comprising at least a portion of a stalk domain in the complementarity-determining region 3 (CDR3H) or fragment thereof; and a therapeutic polypeptide attached to or inserted into said stalk domain of the CDR3H. Also described herein are methods and compositions comprising the immunoglobulin constructs described herein for treatment and prevention of a disease or condition in a subject.
Type:
Application
Filed:
January 10, 2014
Publication date:
December 31, 2015
Inventors:
Feng WANG, Yong ZHANG, Peter G. SCHULTZ
Abstract: The present invention provides improved binding compounds capable of specifically binding Gram-positive bacteria. Binding compounds are provided that are fully human, enabling therapeutic applications in human individuals.
Type:
Application
Filed:
June 2, 2015
Publication date:
December 31, 2015
Inventors:
Tim BEAUMONT, Mark Jeroen KWAKKENBOS, Eric J. BROWN, John Hiroshi MORISAKI, Wouter L.W. HAZENBOS, Sanjeev MARIATHASAN, Kimberly KAJIHARA, Yi XIA
Abstract: The present invention provides methods of treating, ameliorating, or inhibiting tumor growth, cancer, or pathological angiogenesis by administering to a subject in need thereof a human antibody or fragment thereof that specifically binds to human delta-like ligand 4 (hDll4) and blocks hDll4 binding to a Notch receptor. The anti-hDll4 antibody or fragment thereof of the present invention have a high affinity with the KD of 500 pM or less, as measured by surface plasmon resonance.
Type:
Application
Filed:
June 3, 2015
Publication date:
December 31, 2015
Inventors:
Nicholas J. Papadopoulos, Joel H. Martin, Eric Smith, Irene Noguera-Troise, Gavin Thurston
Abstract: The disclosure provides for single chain variable fragments to oxidized phospholipid epitopes and methods of use thereof, including the production of transgenic animal models and the use of the fragments as therapeutic agents for treating CAS.
Type:
Application
Filed:
February 25, 2014
Publication date:
December 31, 2015
Inventors:
Joseph L. Witztum, Sotirios Tsimikas, Xuchu Que
Abstract: The present invention provides antibodies that bind to serum resistance-associated (SRA) protein of Trypanosoma brucei rhodesiense, and methods of use. According to certain embodiments of the invention, the antibodies are fully human antibodies that bind to SRA. The antibodies of the invention are useful for inhibiting or neutralizing SRA activity, thus providing a means of treating human African trypanosomiasis (sleeping sickness), and symptoms associated with the disease. The antibodies of the invention may also be useful for diagnosis of sleeping sickness.
Abstract: The present invention relates to methods and medicaments useful for pre-treatment, treatment, or amelioration of lung remodeling disease. Methods and medicaments for reducing, preventing, or reversing increased lung density, improving lung function, and increasing survivability in subjects having lung remodeling disease are also provided.
Abstract: The invention provides a dual VEGF/PDGF antagonist comprising a VEGF antagonist linked to a PDGF antagonist. The VEGF antagonist is an antibody to a VEGF or VEGFR or is a VEGFR extracellular trap segment (i.e., a segment from the extracellular region of one or more VEGFR receptors that inhibits binding of at least one VEGFR to at least one VEGF). The PDGF antagonist is an antibody to a PDGF or PDGFR or is a PDGFR extracellular trap segment (i.e., segment from the extracellular region of one or more PDGFRs, which inhibits binding of at least one PDGFR and at least one PDGF). The dual antagonist is preferably conjugated to a half-life extending moiety, such as a HEMA-PC polymer. The dual antagonist is particularly useful for treating wet aged related macular degeneration.
Type:
Application
Filed:
June 29, 2015
Publication date:
December 31, 2015
Applicant:
OLIGASIS, LLC
Inventors:
D. Victor Perlroth, Stephen A. Charles, James Aggen, Didier Benoit, Wayne To, Lidia Mosyak, Laura Lin, Justin Cohen, Tetsuya Ishino, William Somers
Abstract: The present invention relates generally to the inhibition of tumor angiogenesis. In particular, the invention concerns the prevention or treatment of tumor angiogenesis and the suppression of tumor growth in tumors refractory to an anti-vascular endothelial growth factor (VEGF) treatment, using IL-17 antagonists, such as anti-IL-17 antibodies and other antagonists.
Abstract: Anti-NTB-A antibodies and antigen-binding fragments thereof, as well as pharmaceutical compositions comprising such antibodies and antigen-binding fragments are described. Also described are methods of using such antibodies and antigen-binding regions to bind NTB-A and treat diseases, such as hematologic malignancies, which are characterized by expression of NTB-A.
Abstract: The present disclosure relates to methods for the treatment, prevention and diagnostic of peripheral T cell lymphoma using compounds that specifically bind NKp46. Included in particular are compounds that bind NKp46 and deplete tumor cells that express at their surface NKp46, and pharmaceutical compositions comprising the same. The disclosure also relates to use of antibodies that specifically bind NKp46 in diagnostic and theranostic assays in the detection and treatment of peripheral T cell lymphoma.
Abstract: This invention relates to compounds that inhibit KIR2DL1, 2 and/or 3 polypeptide comprising compounds (e.g., anti-KIR2DL1, 2, and/or 3 antibodies) that neutralize NK cell inhibitory receptors and methods of using such compounds and compositions containing in the treatment and prevention of inflammatory or autoimmune disorders.
Abstract: Disclosed are antibodies, including antibody drug conjugates, that specifically bind to NTB-A. Also disclosed are methods for using the anti-NTB-A antibodies to detect or modulate activity of (e.g., inhibit proliferation of) an NTB-A-expressing cell, as well as for diagnoses or treatment of diseases or disorders (e.g., cancer) associated with NTB-A-expressing cells. Further disclosed is a method of treating multiple myeloma using an anti-NTB-A antibody drug conjugate, which optionally includes an anti-NTB-A antibody as disclosed herein.
Abstract: The present disclosure relates to proteins that bind to CD83 and uses thereof, for example, in therapy, prophylaxis, diagnosis, or prognosis.
Type:
Application
Filed:
January 31, 2014
Publication date:
December 31, 2015
Applicant:
THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
Inventors:
Therese Ann Seldon, David John Munster, Derek Nigel John Hart, Martina Louise Jones, Trent Phillip Munro, Stephen Michael Mahler, Eunice Yu Zhou, James D. Marks
Abstract: The invention relates to the use of a CD28-specific superagonistic monoclonal antibody (MAB) or of a mimetic compound of the same, for producing a pharmaceutical composition, wherein the dosage is below or above a defined dosage limit.
Abstract: Cancer cells with defects in DNA repair are highly susceptible to DNA-damaging agents, but delivery of therapeutic agents into cell nuclei can be challenging. A sub-set of autoantibodies having nucleolytic activity are capable of nuclear penetration. These antibodies can be used as therapeutic agents targeted towards DNA repair-deficient malignancies.
Type:
Application
Filed:
June 25, 2015
Publication date:
December 31, 2015
Inventors:
James E. Hansen, Richard H. Weisbart, Philip W. Noble
Abstract: The present invention provides methods, compositions and kits for treating and detecting type 2 diabetes and/or conditions that may be regulated or normalised via inhibition of NKG2D, such as cardiovascular diseases.
Type:
Application
Filed:
September 10, 2015
Publication date:
December 31, 2015
Inventors:
Na Xiong, Mingcan Xia, David H. Raulet, Jacob Sten Petersen, Thora Brynja Bodvarsdottir
Abstract: The present invention relates to positions in the constant region of antibodies, in particular the CH3 region of IgG4, which affect the strength of CH3-CH3 interactions. Mutations that either stabilize or destabilize this interaction are disclosed.
Type:
Application
Filed:
June 15, 2015
Publication date:
December 31, 2015
Inventors:
Aran Frank Labrijn, Stefan Loverix, Paul Parren, Jan Van De Winkel, Janine Schuurman, Ignace Laster
Abstract: Anti-EGFR antibodies, therapeutic compositions comprising combinations of anti-EGFR antibodies, as well as methods for using such antibodies and compositions to treat EGFR-related disorders (e.g., cancers), are disclosed.
Type:
Application
Filed:
September 8, 2015
Publication date:
December 31, 2015
Applicant:
Adimab, LLC
Inventors:
Raghida BUKHALID, Michael FELDHAUS, Anne KING, Neeraj KOHLI, Eric KRAULAND, Jeffrey David KEARNS, Alexey A. LUGOVSKOY, Ulrik NIELSEN
Abstract: Binding members for alpha chain of receptor for granulocyte macrophage colony stimulating factor (GM-CSFR?), especially antibody molecules. Use of the binding members in treating inflammatory and autoimmune diseases, e.g. rheumatoid arthritis, asthma, allergic response, multiple sclerosis, myeloid leukaemia and atherosclerosis.
Type:
Application
Filed:
June 29, 2015
Publication date:
December 31, 2015
Inventors:
Emma Suzanne Cohen, Ralph Raymond Minter, Paula Rosamund Harrison, Matthew Alexander Sleeman, Andrew Donald Nash, Louis Jerry Fabri
Abstract: Antigen binding proteins that bind to human CGRP receptor (CGRP R) are provided. Nucleic acids encoding the antigen binding protein, vectors, and cells encoding the same are also provided. The antigen binding proteins can inhibit binding of CGRP R to CGRP, and are useful in a number of CGRP R related disorders, including the treatment and/or prevention of migraine headaches.
Type:
Application
Filed:
June 26, 2015
Publication date:
December 31, 2015
Applicant:
AMGEN INC.
Inventors:
Thomas C. BOONE, David W. BRANKOW, Colin V. GEGG, JR., Shaw-Fen Sylvia HU, Chadwick T. KING, Hsieng Sen LU, Licheng SHI, Cen XU
Abstract: A bispecific antibody specifically binding to the two targets human CD3? and human BCMA, wherein the variable domains of one antibody portion are replaced by each other, and characterized in that the binding of said antibody is not reduced by APRIL and not reduced by BAFF, said antibody does not alter APRIL-dependent NF-?B activation, BAFF-dependent NF-?B activation, and does not alter NF-?B activation without BAFF and APRIL is useful as a therapeutic agent.
Type:
Application
Filed:
February 5, 2014
Publication date:
December 31, 2015
Inventors:
Minh Diem VU, Klaus STREIN, Ekkehard MOESSNER, Ralf HOSSE, Oliver AST, Anne FREIMOSER-GRUNDSCHOBER, Marina BACAC, Tanja FAUTI, Christian KLEIN, Pablo UMANA, Samuel MOSER
Abstract: Methods are provided for treating a subject with for an intracellular pathogen infection, by administering an agent that reduces the binding of CD47 on a infected cell to SIRP? on a host phagocytic cell, in an effective dose for increasing the phagocytosis of infected cells.
Type:
Application
Filed:
February 5, 2014
Publication date:
December 31, 2015
Inventors:
Kipp Andrew Weiskopf, Kim J. Hasenkrug, Cheryl A. Stoddart, Joseph M. McCune, Irving L. Weissman
Abstract: Methods and compositions are provided for the diagnosis and treatment of lung cancers in particular NSCLC associated with amplification or overexpression of the PRO gene, i.e. any of PDGFRA, KIT or KDR.
Type:
Application
Filed:
September 2, 2015
Publication date:
December 31, 2015
Inventors:
John Chant, Anthony S. Guerrero, Peter Haverty, Cynthia Honchell, Kenneth Jung, Thomas D. Wu
Abstract: The present invention relates to antibodies that specifically bind to the human c-Met receptor protein and that act as strict antagonists of hepatocyte growth factor (HGF)-mediated activation of the c-Met receptor and also inhibit HGF-independent activation of the human c-Met protein.
Type:
Application
Filed:
February 17, 2015
Publication date:
December 31, 2015
Inventors:
Anna HULTBERG, Michael Saunders, Johannes De Haard, Els Festjens, Nathalie De Jonge
Abstract: The present invention relates to antibodies that specifically bind to the human c-Met receptor protein and that act as strict antagonists of hepatocyte growth factor (HGF)-mediated activation of the c-Met receptor and also inhibit HGF-independent activation of the human c-Met protein.
Type:
Application
Filed:
February 17, 2015
Publication date:
December 31, 2015
Inventors:
Anna HULTBERG, Michael Saunders, Johannes De Haard, Els Festjens, Nathalie De Jonge
Abstract: The invention provides methods of measuring and/or quantifying the presence and/or amount of p95 and/or p95 complex in a sample. The invention also provides antibodies specific for p95, and methods of making such antibodies.
Type:
Application
Filed:
June 12, 2015
Publication date:
December 31, 2015
Inventors:
Jeff Sperinde, John William Winslow, Xueguang Jin, Gerald J. Wallweber
Abstract: The present invention relates to anti-peptidylarginine deiminase 2 (PAD2) antibodies and anti-PAD2 antibodies for use in the treatment of autoimmune diseases characterized by extracellular citrullination, such as rheumatoid arthritis (RA). The invention further relates to a method for treatment of an autoimmune disease characterized by extracellular citrullination comprising the administration of a suitable amount of an anti-PAD2 antibody to a subject.