Patents by Inventor Anthony Shock

Anthony Shock 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: 20230135399
    Abstract: This invention provides binding proteins, including antibodies, antibody derivatives and antibody fragments, that specifically bind a CD154 (CD4OL) protein. This invention also provides a chimeric, humanized or fully human antibody, antibody derivative or antibody fragment that specifically binds to an epitope to which a humanized Fab fragment comprising a variable heavy chain sequence according to SEQ ID NO: 1 and comprising a variable light chain sequence according to SEQ ID NO: 2 specifically binds. CD154 binding proteins of this invention may elicit reduced effector function relative to a second anti-CD154 antibody. CD154 binding proteins of this invention are useful in diagnostic and therapeutic methods, such as in the treatment and prevention of diseases including those that involve undesirable immune responses that are mediated by CD154-CD40 interactions.
    Type: Application
    Filed: September 7, 2022
    Publication date: May 4, 2023
    Inventors: LINDA C. BURKLY, JANINE L. FERRANT-ORGETTAS, ELLEN A. GARBER, YEN-MING HSU, LIHE SU, FREDERICK R. TAYLOR, RALPH ADAMS, DEREK THOMAS BROWN, ANDREW GEORGE POPPLEWELL, MARTYN KIM ROBINSON, ANTHONY SHOCK, KERRY LOUISE TYSON
  • Publication number: 20190233530
    Abstract: This invention provides binding proteins, including antibodies, antibody derivatives and antibody fragments, that specifically bind a CD154 (CD40L) protein. This invention also provides a chimeric, humanized or fully human antibody, antibody derivative or antibody fragment that specifically binds to an epitope to which a humanized Fab fragment comprising a variable heavy chain sequence according to SEQ ID NO: 1 and comprising a variable light chain sequence according to SEQ ID NO: 2 specifically binds. CD154 binding proteins of this invention may elicit reduced effector function relative to a second anti-CD154 antibody. CD154 binding proteins of this invention are useful in diagnostic and therapeutic methods, such as in the treatment and prevention of diseases including those that involve undesirable immune responses that are mediated by CD154-CD40 interactions.
    Type: Application
    Filed: April 10, 2019
    Publication date: August 1, 2019
    Inventors: Linda C. Burkly, Janine L. Ferrant-Orgettas, Ellen A. Garber, Yen-Ming Hsu, Lihe Su, Frederick R. Taylor, Ralph Adams, Derek Thomas Brown, Andrew George Popplewell, Martyn Kim Robinson, Anthony Shock, Kerry Louise Tyson
  • Publication number: 20160200823
    Abstract: This invention provides binding proteins, including antibodies, antibody derivatives and antibody fragments, that specifically bind a CD154 (CD40L) protein. This invention also provides a chimeric, humanized or fully human antibody, antibody derivative or antibody fragment that specifically binds to an epitope to which a humanized Fab fragment comprising a variable heavy chain sequence according to SEQ ID NO: 1 and comprising a variable light chain sequence according to SEQ ID NO: 2 specifically binds. CD154 binding proteins of this invention may elicit reduced effector function relative to a second anti-CD154 antibody. CD154 binding proteins of this invention are useful in diagnostic and therapeutic methods, such as in the treatment and prevention of diseases including those that involve undesirable immune responses that are mediated by CD154-CD40 interactions.
    Type: Application
    Filed: March 29, 2016
    Publication date: July 14, 2016
    Inventors: LINDA C. BURKLY, JANINE L. FERRANT-ORGETTAS, ELLEN A. GARBER, YEN-MING HSU, LIHE SU, FREDERICK R. TAYLOR, RALPH ADAMS, DEREK THOMAS BROWN, ANDREW GEORGE POPPLEWELL, MARTYN KIM ROBINSON, ANTHONY SHOCK, KERRY LOUISE TYSON
  • Patent number: 9321840
    Abstract: This invention provides binding proteins, including antibodies, antibody derivatives and antibody fragments, that specifically bind a CD154 (CD40L) protein. This invention also provides a chimeric, humanized or fully human antibody, antibody derivative or antibody fragment that specifically binds to an epitope to which a humanized Fab fragment comprising a variable heavy chain sequence according to SEQ ID NO: 1 and comprising a variable light chain sequence according to SEQ ID NO: 2 specifically binds. CD154 binding proteins of this invention may elicit reduced effector function relative to a second anti-CD154 antibody. CD154 binding proteins of this invention are useful in diagnostic and therapeutic methods, such as in the treatment and prevention of diseases including those that involve undesirable immune responses that are mediated by CD154-CD40 interactions.
    Type: Grant
    Filed: June 19, 2014
    Date of Patent: April 26, 2016
    Assignees: UCB BIOPHARMA SPRL, BIOGEN MA INC.
    Inventors: Linda C. Burkly, Janine L. Ferrant-Orgettas, Ellen A. Garber, Yen-Ming Hsu, Lihe Su, Frederick R. Taylor, Ralph Adams, Derek Thomas Brown, Andrew George Popplewell, Martyn Kim Robinson, Anthony Shock, Kerry Louise Tyson
  • Publication number: 20140302016
    Abstract: This invention provides binding proteins, including antibodies, antibody derivatives and antibody fragments, that specifically bind a CD154 (CD40L) protein. This invention also provides a chimeric, humanized or fully human antibody, antibody derivative or antibody fragment that specifically binds to an epitope to which a humanized Fab fragment comprising a variable heavy chain sequence according to SEQ ID NO: 1 and comprising a variable light chain sequence according to SEQ ID NO: 2 specifically binds. CD154 binding proteins of this invention may elicit reduced effector function relative to a second anti-CD154 antibody. CD154 binding proteins of this invention are useful in diagnostic and therapeutic methods, such as in the treatment and prevention of diseases including those that involve undesirable immune responses that are mediated by CD154-CD40 interactions.
    Type: Application
    Filed: June 19, 2014
    Publication date: October 9, 2014
    Inventors: LINDA C. BURKLY, JANINE L. FERRANT-ORGETTAS, ELLEN A. GARBER, YEN-MING HSU, LIHE SU, FREDERICK R. TAYLOR, RALPH ADAMS, DEREK THOMAS BROWN, ANDREW GEORGE POPPLEWELL, MARTYN KIM ROBINSON, ANTHONY SHOCK, KERRY LOUISE TYSON
  • Patent number: 8784823
    Abstract: This invention provides binding proteins, including antibodies, antibody derivatives and antibody fragments, that specifically bind a CD154 (CD40L) protein. This invention also provides a chimeric, humanized or fully human antibody, antibody derivative or antibody fragment that specifically binds to an epitope to which a humanized Fab fragment comprising a variable heavy chain sequence according to SEQ ID NO: 1 and comprising a variable light chain sequence according to SEQ ID NO: 2 specifically binds. CD154 binding proteins of this invention may elicit reduced effector function relative to a second anti-CD154 antibody. CD154 binding proteins of this invention are useful in diagnostic and therapeutic methods, such as in the treatment and prevention of diseases including those that involve undesirable immune responses that are mediated by CD154-CD40 interactions.
    Type: Grant
    Filed: October 22, 2012
    Date of Patent: July 22, 2014
    Assignees: Biogen Idec MA Inc., UCB Biopharma SPRL
    Inventors: Linda C. Burkly, Janine L. Ferrant-Orgettas, Ellen A. Garber, Yen-Ming Hsu, Lihe Su, Frederick R. Taylor, Ralph Adams, Derek Thomas Brown, Andrew George Popplewell, Martyn Kim Robinson, Anthony Shock, Kerry Louise Tyson
  • Patent number: 8293237
    Abstract: This invention provides binding proteins, including antibodies, antibody derivatives and antibody fragments, that specifically bind a CD154 (CD40L) protein. This invention also provides a chimeric, humanized or fully human antibody, antibody derivative or antibody fragment that specifically binds to an epitope to which a humanized Fab fragment comprising a variable heavy chain sequence according to SEQ ID NO: 1 and comprising a variable light chain sequence according to SEQ ID NO: 2 specifically binds. CD154 binding proteins of this invention may elicit reduced effector function relative to a second anti-CD154 antibody. CD154 binding proteins of this invention are useful in diagnostic and therapeutic methods, such as in the treatment and prevention of diseases including those that involve undesirable immune responses that are mediated by CD154-CD40 interactions.
    Type: Grant
    Filed: March 21, 2008
    Date of Patent: October 23, 2012
    Assignees: UCB Pharma, S.A., Biogen Idec MA Inc.
    Inventors: Linda C. Burkly, Janine L. Ferrant-Orgettas, Ellen A. Garber, Yen-Ming Hsu, Lihe Su, Frederick R. Taylor, Ralph Adams, Derek Thomas Brown, Andrew George Popplewell, Martyn Kim Robinson, Anthony Shock, Kerry Louise Tyson
  • Publication number: 20100104573
    Abstract: This invention provides binding proteins, including antibodies, antibody derivatives and antibody fragments, that specifically bind a CD154 (CD40L) protein. This invention also provides a chimeric, humanized or fully human antibody, antibody derivative or antibody fragment that specifically binds to an epitope to which a humanized Fab fragment comprising a variable heavy chain sequence according to SEQ ID NO: 1 and comprising a variable light chain sequence according to SEQ ID NO: 2 specifically binds. CD154 binding proteins of this invention may elicit reduced effector function relative to a second anti-CD154 antibody. CD154 binding proteins of this invention are useful in diagnostic and therapeutic methods, such as in the treatment and prevention of diseases including those that involve undesirable immune responses that are mediated by CD154-CD40 interactions.
    Type: Application
    Filed: March 21, 2008
    Publication date: April 29, 2010
    Applicants: UCB Parma S.A., Biogen Idec MA, Inc.
    Inventors: Linda C. Burkly, Janine L. Ferrant-Orgettas, Ellen A. Garber, Yen-Ming Hsu, Lihe Su, Frederick R. Taylor, Ralph Adams, Derek Thomas Brown, Andrew George Popplewell, Martyn Kim Robinson, Anthony Shock, Kerry Louise Tyson