Patents Examined by Michael D Allen
  • Patent number: 10052382
    Abstract: High affinity antibodies were made to gangliosides expressed on tumor cells. The antibodies can be used analytically, diagnostically, therapeutically, and theranostically. The antibodies may be used to target cytotoxic reagents to tumor cells, thus minimizing full-body toxicity. The antibodies may also be used with out added cytotoxin. The antibodies may be detectably labeled or labelable for analytic and diagnostic purposes. The combination of specificity and affinity of the antibodies render them particularly useful.
    Type: Grant
    Filed: June 2, 2016
    Date of Patent: August 21, 2018
    Assignees: Duke University, The United States of America as Represented by the Secretary of Health (NIH)
    Inventors: Darell Bigner, Chien-Tsun Kuan, Ira H. Pastan, Hailan Piao
  • Patent number: 9889197
    Abstract: Diabody molecules and uses thereof in the treatment of a variety of diseases and disorders, including immunological disorders, infectious disease, intoxication and cancers are disclosed. The diabody molecules comprise two polypeptide chains that associate to form at least two epitope binding sites, which may recognize the same or different epitopes on the same or differing antigens. Additionally, the antigens may be from the same or different molecules. The individual polypeptide chains of the diabody molecule may be covalently bound through non-peptide bond covalent bonds, such as disulfide bonding of cysteine residues located within each polypeptide chain. The diabody molecules may further comprise an Fc region, which allows antibody-like functionality to be engineered into the molecule.
    Type: Grant
    Filed: July 29, 2011
    Date of Patent: February 13, 2018
    Assignee: MacroGenics, Inc.
    Inventors: Leslie S. Johnson, Ling Huang, Godfrey Jonah Anderson Rainey
  • Patent number: 9862770
    Abstract: The present invention concerns methods and compositions comprising an anti-IGF-1R antibody or fragment thereof for treatment of cancer or autoimmune disease. Preferably, the cancer is renal cell carcinoma, breast cancer or pancreatic cancer. The anti-IGF-1R antibody or fragment may be part of a complex, such as a DOCK-AND-LOCK™ (DNL™) (complex produced by binding interaction between anchor domain moiety of A-kinase anchoring protein and dimerization and docking domain moiety of protein kinase A regulatory subunit) complex. Preferably, the DNL™ (complex produced by binding interaction between anchor domain moiety of A-kinase anchoring protein and dimerization and docking domain moiety of protein kinase A regulatory subunit) complex also comprises a second antibody, a second antibody fragment, an affibody or a cytokine. More preferably, the cytokine is interferon-?2b. Most preferably, the second antibody, second fragment or affibody binds to IGF-1R, TROP2 or CEACAM6.
    Type: Grant
    Filed: October 3, 2014
    Date of Patent: January 9, 2018
    Assignee: IBC Pharmaceuticals, Inc.
    Inventors: Chien-Hsing Chang, David M. Goldenberg
  • Patent number: 9855291
    Abstract: Novel monoclonal antibodies that specifically bind to KAAG1 are described. In some embodiments, the antibodies block the biological activity of KAAG1 and are useful in composition in certain cancers, more particularly in cancers that have increased cell surface expression of KAAG1, such as ovarian, renal, lung, colorectal, breast, brain, and prostate cancer, as well as melanoma. The invention also relates to cells expressing the monoclonal antibodies and antigen binding fragments such as humanized and chimeric antibodies. Additionally, methods of detecting and treating cancer using the antibodies and fragments are also disclosed.
    Type: Grant
    Filed: November 3, 2009
    Date of Patent: January 2, 2018
    Assignee: ADC Therapeutics SA
    Inventors: Gilles Bernard Tremblay, Mario Filion, Traian Sulea
  • Patent number: 9790267
    Abstract: The present invention relates to compositions and methods for diagnosing and treating diseases, disorders or conditions associated with dysregulated expression of GPC3. The invention provides novel antibodies that specifically bind to glypican-3 (GPC3). The invention also relates to a fully human chimeric antigen receptor (CAR) wherein the CAR is able to target GPC3.
    Type: Grant
    Filed: February 17, 2014
    Date of Patent: October 17, 2017
    Assignees: The Trustees of the University of Pennsylvania, The United States of America, as represented by the Secretary of the Department of Veterans Affairs
    Inventor: David Kaplan
  • Patent number: 9758590
    Abstract: The present invention provides recombinant antigen-binding regions and antibodies and functional fragments containing such antigen-binding regions that are specific for CD38, which plays an integral role in various disorders or conditions. These antibodies, accordingly, can be used to treat, for example, hematological malignancies such as multiple myeloma. Antibodies of the invention also can be used in the diagnostics field, as well as for investigating the role of CD38 in the progression of disorders associated with malignancies. The invention also provides nucleic acid sequences encoding the foregoing antibodies, vectors containing the same, pharmaceutical compositions and kits with instructions for use. The invention also provides isolated novel epitopes of CD38 and methods of use therefore.
    Type: Grant
    Filed: December 4, 2015
    Date of Patent: September 12, 2017
    Assignee: MORPHOSYS AG
    Inventors: Michael Tesar, Ute Jaeger
  • Patent number: 9724337
    Abstract: Compositions, methods, and combination therapies for the treatment of cancers, including lymphomas, leukemias, melanomas, lung cancer, and metastatic disease, are provided. Specifically, compositions comprising ligands to Pgrmc1 are disclosed for use in treating and inhibiting tumor growth and progression and inhibition of metastases. The compositions and methods using these ligands can be used alone or in combination with other reagents and cancer treatment modalities.
    Type: Grant
    Filed: April 20, 2010
    Date of Patent: August 8, 2017
    Assignee: University of Kentucky Research Foundation
    Inventor: Rolf Joseph Craven
  • Patent number: 9675693
    Abstract: An object is to provide glioma treatment and testing methods, and a method for delivering a desired substance to a glioma, all of which target a molecule specifically expressed in a glioma, as well as drugs and so forth used in these methods. It has been found out that targeting Eva1 or Ceacam1 enables glioma treatment and testing, and delivering of a desired substance to a glioma.
    Type: Grant
    Filed: September 29, 2011
    Date of Patent: June 13, 2017
    Assignee: RIKEN
    Inventor: Toru Kondo
  • Patent number: 9631031
    Abstract: The invention relates to multispecific antibody constructs comprising Fab fragments having mutations at the interface of the CH1 and CL domains, said mutations preventing heavy/light chain mispairing.
    Type: Grant
    Filed: July 6, 2012
    Date of Patent: April 25, 2017
    Assignees: Centre National de la Recherche Scientifique, Azienda Ospedaliera Papa Giovanni XXIII, Universite de Lausanne
    Inventors: Jean Kadouche, Jean-Pierre Mach, Olivier Michielin, Vincent Zoete, Justyna Iwaszkiewicz, Martine Cerutti, Sylvie Choblet, Josee Golay
  • Patent number: 9629925
    Abstract: The present disclosure relates to immunoglobulins and immunoglobulin conjugates with reduced oligomerization and efficient labeling and compositions, methods of generating such immunoglobulins and immunoglobulin conjugates and methods of using such immunoglobulin conjugates particularly in the treatment and prevention of disease.
    Type: Grant
    Filed: August 1, 2014
    Date of Patent: April 25, 2017
    Assignees: Novartis AG, Massachusetts Institute of Technology
    Inventors: Naresh Chennamsetty, Bernhard Helk, Veysel Kayser, Bernhardt Trout, Vladimir Voynov
  • Patent number: 9540438
    Abstract: The present disclosure provides aldehyde-tagged immunoglobulin (Ig) polypeptides that can be converted by a formylglycine-generating enzyme to produce a 2-formylglycine (FGly)-modified Ig polypeptide. An FGly-modified Ig polypeptide can be covalently and site-specifically bound to a moiety of interest to provide an Ig conjugate. The disclosure also encompasses methods of production of such aldehyde-tagged Ig polypeptides, FGly-modified Ig polypeptides, and Ig conjugates, as well as methods of use of same.
    Type: Grant
    Filed: January 13, 2012
    Date of Patent: January 10, 2017
    Assignee: Redwood Bioscience, Inc.
    Inventors: Robyn M. Barfield, Mark Alan Breidenbach, Gregory W. deHart, David Rabuka
  • Patent number: 9475877
    Abstract: The present invention relates to amino acid sequences that are directed against RANK-L, as well as to compounds or constructs, and in particular proteins and polypeptides, that comprise or essentially consist of one or more such amino acid sequences. The invention also relates to nucleic acids encoding such amino acid sequences and polypeptides; to methods for preparing such amino acid sequences and polypeptides; to host cells expressing or capable of expressing such amino acid sequences or polypeptides; to compositions, and in particular to pharmaceutical compositions, that comprise such amino acid sequences, polypeptides, nucleic acids and/or host cells; and to uses of such amino acid sequences or polypeptides, nucleic acids, host cells and/or compositions, in particular for prophylactic, therapeutic or diagnostic purposes.
    Type: Grant
    Filed: September 11, 2009
    Date of Patent: October 25, 2016
    Assignee: Ablynx N.V.
    Inventors: Els Anna Alice Beirnaert, Sigrid Cornelis, Hendricus Renerus Jacobus Mattheus Hoogenboom
  • Patent number: 9458245
    Abstract: Provided herein are tandem Fcs and tandem Fc antibodies (“TFcAs”), e.g., tandem Fc bispecific antibodies (“TFcBAs”), which comprise one or at least two binding sites that specifically bind to one or more cell surface receptors. The binding sites are connected through a TFc, which TFc comprises a first Fc region and a second Fc region, wherein the first and the second Fc regions are linked through a TFc linker to form a contiguous polypeptide and dimerize to form an Fc dimer. Exemplary TFcBAs bind to the cell surface receptors c-Met and EpCam and inhibit signal transduction through the cell surface receptor(s) for which the binding sites of the TFcBA are specific.
    Type: Grant
    Filed: March 6, 2014
    Date of Patent: October 4, 2016
    Assignee: Merrimack Pharmaceuticals, Inc.
    Inventors: Brian Harms, Neeraj Kohli, Alexey Lugovskoy, Melissa Geddie, Eric Mark Krauland, William George Roach, Stephen Su, Adnan Abu-Yousif
  • Patent number: 9446125
    Abstract: Antibodies that bind to tumor associated antigen CD44 or to tumor associated antigen EphA2, are disclosed herein, as well as related compositions and methods of use. Methods of use encompass cancer therapies, diagnostics, and screening methods.
    Type: Grant
    Filed: August 18, 2015
    Date of Patent: September 20, 2016
    Assignee: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA, BERKE
    Inventors: Yu Zhou, James D. Marks
  • Patent number: 9441048
    Abstract: High affinity antibodies were made to gangliosides expressed on tumor cells. The antibodies can be used analytically, diagnostically, therapeutically, and theranostically. The antibodies may be used to target cytotoxic reagents to tumor cells, thus minimizing full-body toxicity. The antibodies may also be used with out added cytotoxin. The antibodies may be detectably labeled or labelable for analytic and diagnostic purposes. The combination of specificity and affinity of the antibodies render them particularly useful.
    Type: Grant
    Filed: November 15, 2011
    Date of Patent: September 13, 2016
    Assignees: The United States of America as represented by the Secretary of Health and Human Services, Duke University
    Inventors: Darell Bigner, Chien-Tsun Kuan, Ira H. Pastan, Hailan Piao
  • Patent number: 9427464
    Abstract: The present invention provides: an antibody which specifically reacts with hTROP-2 and has anti-tumor activity in vivo (particularly, a humanized antibody); a hybridoma which produces the aforementioned antibody; a conjugate of the aforementioned antibody and a drug; a pharmaceutical composition for diagnosing or treating a tumor; a method for detecting a tumor; and a kit for detecting or diagnosing a tumor.
    Type: Grant
    Filed: November 20, 2012
    Date of Patent: August 30, 2016
    Assignee: CHIOME BIOSCIENCE INC.
    Inventors: Koji Nakamura, Kentaro Okamura, Maki Tamura, Hiroyuki Yanai, Toru Kanke, Naoya Tsurushita, Shankar Kumar
  • Patent number: 9273140
    Abstract: To provide a method for detecting cellular DNA damage by specifically recognizing molecules responsive to DNA strand breaks. A method for detecting DNA damage in cells, which comprises administering in vivo, to cells, an antibody against a cell membrane surface antigen that is expressed in cells undergoing DNA strand breaks to a greater extent than in cells not undergoing DNA strand breaks in an environment that causes DNA damage, and analyzing the expression status of the cell membrane surface antigen.
    Type: Grant
    Filed: May 10, 2013
    Date of Patent: March 1, 2016
    Assignees: FUJITA HEALTH UNIVERSITY, Perseus Proteomics Inc.
    Inventors: Yoshikazu Kurosawa, Maiko Kurosawa, Gene Kurosawa
  • Patent number: 9220772
    Abstract: Antibodies that bind to tumor associated antigen CD44 or to tumor associated antigen EphA2, are disclosed herein, as well as related compositions and methods of use. Methods of use encompass cancer therapies, diagnostics, and screening methods.
    Type: Grant
    Filed: July 22, 2011
    Date of Patent: December 29, 2015
    Assignee: The Regents of the University of California
    Inventors: Yu Zhou, James D. Marks
  • Patent number: 9216218
    Abstract: The present invention provides antibodies useful as therapeutics for treating and/or preventing diseases associated with cells expressing GT468, including tumor-related diseases such as breast cancer, lung cancer, gastric cancer, ovarian cancer, hepatocellular cancer, colon cancer, pancreatic cancer, esophageal cancer, head & neck cancer, kidney cancer, in particular renal cell carcinoma, prostate cancer, liver cancer, melanoma, sarcoma, myeloma, neuroblastoma, placental choriocarcinoma, cervical cancer, and thyroid cancer, and the metastatic forms thereof. In one embodiment, the tumor disease is metastatic cancer in the lung.
    Type: Grant
    Filed: March 10, 2011
    Date of Patent: December 22, 2015
    Assignees: GANYMED PHARMACEUTICALS AG, JOHANNES GUTENBERG-UNIVERSITAT MAINZ
    Inventors: Ugur Sahin, Ozlem Tureci, Michael Koslowski, Rita Mitnachtkraus
  • Patent number: 9132189
    Abstract: The present invention relates to Notch1 binding agents and methods of using the agents for treating diseases, such as hematologic cancers. The present invention provides antibodies that specifically bind to a non-ligand binding membrane proximal region of the extracellular domain of human Notch1. The present invention further provides methods of using agents that inhibit Notch1 activity for treating cancer. Also described are methods of treating hematologic cancers comprising administering a therapeutically effective amount of a binding agent or antibody of the present invention to a subject having a hematologic cancer such as T-cell lymphoblastic leukemia.
    Type: Grant
    Filed: March 12, 2013
    Date of Patent: September 15, 2015
    Assignee: OncoMed Pharmaceuticals, Inc.
    Inventors: Edward Thein Htun van der Horst, Austin L. Gurney, Timothy Charles Hoey, Maureen Fitch Bruhns, Fumiko Takada Axelrod