Patents by Inventor Jean Beebe

Jean Beebe has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20160096894
    Abstract: The present invention relates to antibodies and antigen-binding portions thereof that specifically bind to insulin-like growth factor I receptor (IGF-IR), which is preferably human IGF-IR. The invention also relates to human anti-IGF-IR antibodies, including chimeric, bispecific, derivatized, single chain antibodies or portions of fusion proteins. The invention also relates to isolated heavy and light chain immunoglobulin molecules derived from anti-IGF-IR antibodies and nucleic acid molecules encoding such molecules. The present invention also relates to methods of making anti-IGF-IR antibodies, pharmaceutical compositions comprising these antibodies and methods of using the antibodies and compositions thereof for diagnosis and treatment. The invention also provides gene therapy methods using nucleic acid molecules encoding the heavy and/or light immunoglobulin molecules that comprise the human anti-IGF-IR antibodies.
    Type: Application
    Filed: December 17, 2015
    Publication date: April 7, 2016
    Inventors: Bruce D. Cohen, Jean Beebe, JR., Penelope E. Miller, James D. Moyer, Jose Ramon Corvalan, Michael Gallo
  • Patent number: 9234041
    Abstract: The present invention relates to antibodies and antigen-binding portions thereof that specifically bind to insulin-like growth factor I receptor (IGF-IR), which is preferably human IGF-IR. The invention also relates to human anti-IGF-IR antibodies, including chimeric, bispecific, derivatized, single chain antibodies or portions of fusion proteins. The invention also relates to isolated heavy and light chain immunoglobulin molecules derived from anti-IGF-IR antibodies and nucleic acid molecules encoding such molecules. The present invention also relates to methods of making anti-IGF-IR antibodies, pharmaceutical compositions comprising these antibodies and methods of using the antibodies and compositions thereof for diagnosis and treatment. The invention also provides gene therapy methods using nucleic acid molecules encoding the heavy and/or light immunoglobulin molecules that comprise the human anti-IGF-IR antibodies.
    Type: Grant
    Filed: December 19, 2013
    Date of Patent: January 12, 2016
    Assignees: Pfizer Inc., Amgen Fremont Inc.
    Inventors: Bruce D. Cohen, Jean Beebe, Jr., Penelope E. Miller, James D. Moyer, Jose Ramon Corvalan, Michael Gallo
  • Publication number: 20140286959
    Abstract: The present invention relates to antibodies and antigen-binding portions thereof that specifically bind to a M-CSF, preferably human M-CSF, and that function to inhibit a M-CSF. The invention also relates to human anti-M-CSF antibodies and antigen-binding portions thereof. The invention also relates to antibodies that are chimeric, bispecific, derivatized, single chain antibodies or portions of fusion proteins. The invention also relates to isolated heavy and light chain immunoglobulins derived from human anti-M-CSF antibodies and nucleic acid molecules encoding such immunoglobulins. The present invention also relates to methods of making human anti-M-CSF antibodies, compositions comprising these antibodies and methods of using the antibodies and compositions for diagnosis and treatment. The invention also provides gene therapy methods using nucleic acid molecules encoding the heavy and/or light immunoglobulin molecules that comprise the human anti-M-CSF antibodies.
    Type: Application
    Filed: November 2, 2012
    Publication date: September 25, 2014
    Applicant: PFIZER Inc.
    Inventors: Martin Hegen, Deborah Young, Heath Guay, Kyriaki Dunussi-Joannopoulos, Sudhakar Sridharan, Annette Diehl, Gail Comer, Margot O'Toole, Jean Beebe, Robert Fogel, Marek Honczarenko, David Beidler, Padmalatha S. Reddy, David J. von Schack
  • Publication number: 20140120089
    Abstract: The present invention relates to antibodies and antigen-binding portions thereof that specifically bind to insulin-like growth factor I receptor (IGF-IR), which is preferably human IGF-IR. The invention also relates to human anti-IGF-IR antibodies, including chimeric, bispecific, derivatized, single chain antibodies or portions of fusion proteins. The invention also relates to isolated heavy and light chain immunoglobulin molecules derived from anti-IGF-IR antibodies and nucleic acid molecules encoding such molecules. The present invention also relates to methods of making anti-IGF-IR antibodies, pharmaceutical compositions comprising these antibodies and methods of using the antibodies and compositions thereof for diagnosis and treatment. The invention also provides gene therapy methods using nucleic acid molecules encoding the heavy and/or light immunoglobulin molecules that comprise the human anti-IGF-IR antibodies.
    Type: Application
    Filed: December 19, 2013
    Publication date: May 1, 2014
    Applicants: PFIZER INC., AMGEN FREMONT INC.
    Inventors: Bruce D. Cohen, Jean Beebe, Jr., Penelope E. Miller, James D. Moyer, Jose Ramon Corvalan, Michael Gallo
  • Patent number: 8642037
    Abstract: The present invention relates to antibodies and antigen-binding portions thereof that specifically bind to insulin-like growth factor I receptor (IGF-IR), which is preferably human IGF-IR. The invention also relates to human anti-IGF-IR antibodies, including chimeric, bispecific, derivatized, single chain antibodies or portions of fusion proteins. The invention also relates to isolated heavy and light chain immunoglobulin molecules derived from anti-IGF-IR antibodies and nucleic acid molecules encoding such molecules. The present invention also relates to methods of making anti-IGF-IR antibodies, pharmaceutical compositions comprising these antibodies and methods of using the antibodies and compositions thereof for diagnosis and treatment. The invention also provides gene therapy methods using nucleic acid molecules encoding the heavy and/or light immunoglobulin molecules that comprise the human anti-IGF-IR antibodies.
    Type: Grant
    Filed: June 27, 2011
    Date of Patent: February 4, 2014
    Assignees: Amgen Fremont Inc., Pfizer Inc.
    Inventors: Bruce D. Cohen, Jean Beebe, Penelope E. Miller, James D. Moyer, Jose Ramon Corvalan, Michael Gallo
  • Publication number: 20120005767
    Abstract: The present invention relates to antibodies and antigen-binding portions thereof that specifically bind to insulin-like growth factor I receptor (IGF-IR), which is preferably human IGF-IR. The invention also relates to human anti-IGF-IR antibodies, including chimeric, bispecific, derivatized, single chain antibodies or portions of fusion proteins. The invention also relates to isolated heavy and light chain immunoglobulin molecules derived from anti-IGF-IR antibodies and nucleic acid molecules encoding such molecules. The present invention also relates to methods of making anti-IGF-IR antibodies, pharmaceutical compositions comprising these antibodies and methods of using the antibodies and compositions thereof for diagnosis and treatment. The invention also provides gene therapy methods using nucleic acid molecules encoding the heavy and/or light immunoglobulin molecules that comprise the human anti-IGF-IR antibodies.
    Type: Application
    Filed: June 27, 2011
    Publication date: January 5, 2012
    Applicants: PFIZER INC., AMGEN FREMONT INC.
    Inventors: Bruce D. Cohen, Jean Beebe, Penelope E. Miller, James D. Moyer, Jose R. Corvalan, Michael Gallo
  • Patent number: 7982024
    Abstract: The present invention relates to antibodies and antigen-binding portions thereof that specifically bind to insulin-like growth factor I receptor (IGF-IR), which is preferably human IGF-IR. The invention also relates to human anti-IGF-IR antibodies, including chimeric, bispecific, derivatized, single chain antibodies or portions of fusion proteins. The invention also relates to isolated heavy and light chain immunoglobulin molecules derived from anti-IGF-IR antibodies and nucleic acid molecules encoding such molecules. The present invention also relates to methods of making anti-IGF-IR antibodies, pharmaceutical compositions comprising these antibodies and methods of using the antibodies and compositions thereof for diagnosis and treatment. The invention also provides gene therapy methods using nucleic acid molecules encoding the heavy and/or light immunoglobulin molecules that comprise the human anti-IGF-IR antibodies.
    Type: Grant
    Filed: April 8, 2010
    Date of Patent: July 19, 2011
    Assignees: Amgen Fremont Inc., Pfizer Inc.
    Inventors: Bruce D. Cohen, Jean Beebe, Penelope E. Miller, James D. Moyer, Jose Ramon Corvalan, Michael Gallo
  • Patent number: 7815907
    Abstract: The present invention relates to antibodies and antigen-binding portions thereof that specifically bind to insulin-like growth factor I receptor (IGF-IR), which is preferably human IGF-IR. The invention also relates to human anti-IGF-IR antibodies, including chimeric, bispecific, derivatized, single chain antibodies or portions of fusion proteins. The invention also relates to isolated heavy and light chain immunoglobulin molecules derived from anti-IGF-IR antibodies and nucleic acid molecules encoding such molecules. The present invention also relates to methods of making anti-IGF-IR antibodies, pharmaceutical compositions comprising these antibodies and methods of using the antibodies and compositions thereof for diagnosis and treatment. The invention also provides gene therapy methods using nucleic acid molecules encoding the heavy and/or light immunoglobulin molecules that comprise the human anti-IGF-IR antibodies.
    Type: Grant
    Filed: June 2, 2005
    Date of Patent: October 19, 2010
    Assignees: Amgen Fremont Inc., Pfizer Inc.
    Inventors: Bruce D Cohen, Jean Beebe, Penelope E Miller, James D Moyer, Jose R Corvalan, Michael Gallo
  • Publication number: 20100255538
    Abstract: The present invention relates to antibodies and antigen-binding portions thereof that specifically bind to insulin-like growth factor I receptor (IGF-IR), which is preferably human IGF-IR. The invention also relates to human anti-IGF-IR antibodies, including chimeric, bispecific, derivatized, single chain antibodies or portions of fusion proteins. The invention also relates to isolated heavy and light chain immunoglobulin molecules derived from anti-IGF-IR antibodies and nucleic acid molecules encoding such molecules. The present invention also relates to methods of making anti-IGF-IR antibodies, pharmaceutical compositions comprising these antibodies and methods of using the antibodies and compositions thereof for diagnosis and treatment. The invention also provides gene therapy methods using nucleic acid molecules encoding the heavy and/or light immunoglobulin molecules that comprise the human anti-IGF-IR antibodies.
    Type: Application
    Filed: April 8, 2010
    Publication date: October 7, 2010
    Applicants: AMGEN FREMONT INC., PFIZER INC.
    Inventors: Bruce D. Cohen, Jean Beebe, Penelope E. Miller, James D. Moyer, Jose R. Corvalan, Michael Gallo
  • Patent number: 7700742
    Abstract: The present invention relates to antibodies and antigen-binding portions thereof that specifically bind to insulin-like growth factor I receptor (IGF-IR), which is preferably human IGF-IR. The invention also relates to human anti-IGF-IR antibodies, including chimeric, bispecific, derivatized, single chain antibodies or portions of fusion proteins. The invention also relates to isolated heavy and light chain immunoglobulin molecules derived from anti-IGF-IR antibodies and nucleic acid molecules encoding such molecules. The present invention also relates to methods of making anti-IGF-IR antibodies, pharmaceutical compositions comprising these antibodies and methods of using the antibodies and compositions thereof for diagnosis and treatment. The invention also provides gene therapy methods using nucleic acid molecules encoding the heavy and/or light immunoglobulin molecules that comprise the human anti-IGF-IR antibodies.
    Type: Grant
    Filed: June 2, 2005
    Date of Patent: April 20, 2010
    Assignees: Amgen Fremont, Pfizer, Inc.
    Inventors: Bruce D Cohen, Jean Beebe, Penelope E Miller, James D Moyer, Jose R Corvalan, Michael Gallo
  • Publication number: 20070197517
    Abstract: This invention relates a method of treating hyperproliferative diseases. More particularly, the present invention relates to a method of treating hyperproliferative diseases, such as cancer, comprising the step of administering to a mammal in need of such treatment, either simultaneously or sequentially, (i) a therapeutically effective amount of a taxane derivative, a platinium coordination complex selected from the group consisting of carboplatin, tetraplatin, and topotecan, a nucleoside analog selected from the group consisting of gemcitabine hydrochloride and 5-FU, an anthracycline, a topoisomerase selected from the group consisting of etoposide, teniposide, amsacrine, topotecan, and Camptosar®, an aromatase inhibitor; and (ii) a therapeutically effective amount of an isothiazole derivative. The combinations of the present invention may optionally include an anti-hypertensive agent.
    Type: Application
    Filed: August 19, 2003
    Publication date: August 23, 2007
    Inventors: Jitesh Jani, Jean Beebe, Tracey Schaeffer, Diane Healey, Karen Ferrante, James O'Leary
  • Patent number: 7037498
    Abstract: The present invention relates to antibodies and antigen-binding portions thereof that specifically bind to insulin-like growth factor I receptor (IGF-IR), which is preferably human IGF-IR. The invention also relates to human anti-IGF-IR antibodies, including chimeric, bispecific, derivatized, single chain antibodies or portions of fusion proteins. The invention also relates to isolated heavy and light chain immunoglobulin molecules derived from anti-IGF-IR antibodies and nucleic acid molecules encoding such molecules. The present invention also relates to methods of making anti-IGF-IR antibodies, pharmaceutical compositions comprising these antibodies and methods of using the antibodies and compositions thereof for diagnosis and treatment. The invention also provides gene therapy methods using nucleic acid molecules encoding the heavy and/or light immunoglobulin molecules that comprise the human anti-IGF-IR antibodies.
    Type: Grant
    Filed: January 4, 2002
    Date of Patent: May 2, 2006
    Assignees: Abgenix, Inc., Pfizer Inc
    Inventors: Bruce D. Cohen, Jean Beebe, Penelope E. Miller, James D. Moyer, Jose R. Corvalan, Michael Gallo
  • Publication number: 20050281812
    Abstract: The present invention relates to antibodies and antigen-binding portions thereof that specifically bind to insulin-like growth factor I receptor (IGF-IR), which is preferably human IGF-IR. The invention also relates to human anti-IGF-IR antibodies, including chimeric, bispecific, derivatized, single chain antibodies or portions of fusion proteins. The invention also relates to isolated heavy and light chain immunoglobulin molecules derived from anti-IGF-IR antibodies and nucleic acid molecules encoding such molecules. The present invention also relates to methods of making anti-IGF-IR antibodies, pharmaceutical compositions comprising these antibodies and methods of using the antibodies and compositions thereof for diagnosis and treatment. The invention also provides gene therapy methods using nucleic acid molecules encoding the heavy and/or light immunoglobulin molecules that comprise the human anti-IGF-IR antibodies.
    Type: Application
    Filed: June 2, 2005
    Publication date: December 22, 2005
    Inventors: Bruce Cohen, Jean Beebe, Penelope Miller, James Moyer, Jose Corvalan, Michael Gallo
  • Publication number: 20050245456
    Abstract: This invention relates to a method of treating drug side effects in cancer treatment. More particularly, the present invention relates to preventing, reducing, alleviating, or reversing diarrhea caused by the administration of the isothiazole 3-(4-Bromo-2,6-difluoro-benzyloxy)-5-[3-(4-pyrrolidin-1-yl-butyl)-ureido]-isothiazole-4-carboxylic acid amide in the treatment of cancer comprising the step of administering to a patient in need of such treatment, prior to, simultaneously, or sequentially, a therapeutically effective amount of 3-(4-Bromo-2,6-difluoro-benzyloxy)-5-[3-(4-pyrrolidin-1-yl-butyl)-ureido]-isothiazole-4-carboxylic acid amide or a pharmaceutically acceptable salt thereof, and a therapeutically effective amount of an anti-diarrheal agent, a bulking agent, or an anti-estrogen. The combinations of the present invention may optionally include an anti-hypertensive agent.
    Type: Application
    Filed: April 28, 2005
    Publication date: November 3, 2005
    Inventors: Diane Healey, Jean Beebe, James O'Leary, W. Roberts, Anthony Tolcher, Mark Huberman
  • Publication number: 20040086503
    Abstract: The present invention relates to antibodies and antigen-binding portions thereof that specifically bind to insulin-like growth factor I receptor (IGF-IR), which is preferably human IGF-IR. The invention also relates to human anti-IGF-IR antibodies, including chimeric, bispecific, derivatized, single chain antibodies or portions of fusion proteins. The invention also relates to isolated heavy and light chain immunoglobulin molecules derived from anti-IGF-IR antibodies and nucleic acid molecules encoding such molecules. The present invention also relates to methods of making anti-IGF-IR antibodies, pharmaceutical compositions comprising these antibodies and methods of using the antibodies and compositions thereof for diagnosis and treatment. The invention also provides gene therapy methods using nucleic acid molecules encoding the heavy and/or light immunoglobulin molecules that comprise the human anti-IGF-IR antibodies.
    Type: Application
    Filed: January 4, 2002
    Publication date: May 6, 2004
    Inventors: Bruce D. Cohen, Jean Beebe, Penelope E. Miller, James D. Moyer, Jose R. Corvalan, Michael Gallo