Patents by Inventor Ronald A. Fleming

Ronald A. Fleming 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: 20250197494
    Abstract: This disclosure provides a method for treating a subject afflicted with a tumor or a cancer, wherein the method comprises administering to the subject therapeutically effective amounts of an anti-TIM3 antibody, alone or in combination with an inhibitor of the PD-1 signaling pathway (e.g., anti-PD-1 antibody). In some embodiments, the antibody is administered as a flat dose or a weight-based dose.
    Type: Application
    Filed: January 17, 2025
    Publication date: June 19, 2025
    Inventors: Xiao Min SCHEBYE, Mark J. SELBY, Michelle Minhua HAN, Christine BEE, Andy X. DENG, Anan CHUNTHARAPAI, Brigitte DEVAUX, Huiming LI, Paul O. SHEPPARD, Alan J. KORMAN, Daniel F. ARDOUREL, Ekaterina DEYANOVA, Richard Yu-Cheng HUANG, Guodong CHEN, Michelle Renne KUHNE, Hong-An TRUONG, Poliana PATAH, Jeffrey R. JACKSON, Ronald A. FLEMING
  • Publication number: 20240174749
    Abstract: This disclosure provides a method for treating a subject afflicted with a tumor or a cancer, wherein the method comprises administering to the subject therapeutically effective amounts of an anti-TIM3 antibody, alone or in combination with an inhibitor of the PD-1 signaling pathway (e.g., anti-PD-1 antibody). In some embodiments, the antibody is administered as a flat dose or a weight-based dose.
    Type: Application
    Filed: September 27, 2023
    Publication date: May 30, 2024
    Applicant: Bristol-Myers Squibb Company
    Inventors: Xiao Min SCHEBYE, Mark J. SELBY, Michelle Minhua HAN, Christine BEE, Andy X. DENG, Anan CHUNTHARAPAI, Brigitte DEVAUX, Huiming LI, Paul O. SHEPPARD, Alan J. KORMAN, Daniel F. ARDOUREL, Ekaterina DEYANOVA, Richard Yu-Cheng HUANG, Guodong CHEN, Michelle Renne KUHNE, Hong-An TRUONG, Poliana PATAH, Jeffrey R. JACKSON, Ronald A. FLEMING
  • Publication number: 20210363242
    Abstract: This disclosure provides a method for treating a subject afflicted with a tumor or a cancer, wherein the method comprises administering to the subject therapeutically effective amounts of an anti-TIM3 antibody, alone or in combination with an inhibitor of the PD-1 signaling pathway (e.g., anti-PD-1 antibody). In some embodiments, the antibody is administered as a flat dose or a weight-based dose.
    Type: Application
    Filed: January 15, 2019
    Publication date: November 25, 2021
    Applicant: Bristol-Myers Squibb Company
    Inventors: Xiao Min SCHEBYE, Mark J. SELBY, Michelle Minhua HAN, Christine BEE, Andy X. DENG, Anan CHUNTHARAPAI, Brigitte DEVAUX, Huiming LI, Paul O. SHEPPARD, Alan J. KORMAN, Daniel F. ARDOUREL, Ekaterina DEYANOVA, Richard Yu-Cheng HUANG, Guodong CHEN, Michelle Renne KUHNE, Hong-An TRUONG, Poliana PATAH, Jeffrey R. JACKSON, Ronald A. FLEMING
  • Patent number: 9192604
    Abstract: This invention relates to a method of treating cancer in a human in need thereof by determining the presence or absence of a detectable amount of a gene product of the Neurofibromin-2 (NF2) gene in a sample from the human, and administering to the human an effective amount of a focal adhesion kinase (FAK) inhibitor, or a pharmaceutically acceptable salt thereof, if no gene product or no isoform 1 gene product is detected. This invention also relates to a method of treating cancer in a human in need thereof, comprising determining the presence or absence of a detectable amount of a functional isoform 1 protein of the NF2 gene, or a functional fragment thereof, in a sample from the human, and administering to the human an effective amount of a focal adhesion kinase (FAK) inhibitor, or a pharmaceutically acceptable salt thereof, if no gene product or no isoform 1 gene product is detected.
    Type: Grant
    Filed: June 28, 2012
    Date of Patent: November 24, 2015
    Assignee: GlaxoSmithKline Intellectual Property (No. 2) Limited
    Inventors: Kurt R. Auger, Mohammed M. Dar, Ronald A. Fleming
  • Publication number: 20140128434
    Abstract: This invention relates to a method of treating cancer in a human in need thereof by determining the presence or absence of a detectable amount of a gene product of the Neurofibromin-2 (NF2) gene in a sample from the human, and administering to the human an effective amount of a focal adhesion kinase (FAK) inhibitor, or a pharmaceutically acceptable salt thereof, if no gene product or no isoform 1 gene product is detected. This invention also relates to a method of treating cancer in a human in need thereof, comprising determining the presence or absence of a detectable amount of a functional isoform 1 protein of the NF2 gene, or a functional fragment thereof, in a sample from the human, and administering to the human an effective amount of a focal adhesion kinase (FAK) inhibitor, or a pharmaceutically acceptable salt thereof, if no gene product or no isoform 1 gene product is detected.
    Type: Application
    Filed: June 28, 2012
    Publication date: May 8, 2014
    Inventors: Kurt R. Auger, Mohammed M. Dar, Ronald A. Fleming
  • Patent number: 8138200
    Abstract: The invention includes compositions and methods useful for treatment of a virus infection in a mammal by double-targeting the virus (i.e. targeting the virus at more than one stage of the virus life cycle) and thereby inhibiting virus replication. The compositions of the invention include compounds which comprise a phosphocholine moiety covalently conjugated with one or more antiviral agents (e.g. nucleoside analogue, protease inhibitor, etc.) to a lipid backbone. The invention also includes pharmaceutical compositions and kits for use in treatment of a virus infection in mammals. The methods of the invention comprise administering a compound of the invention, a pharmaceutically acceptable salt thereof, or a pharmaceutical composition of the invention, in an amount effective to treat the infection, to a mammal infected with a virus. Additionally, the invention includes compositions and methods useful for combating a cancer in a mammal and for facilitating delivery of a therapeutic agent to a mammalian cell.
    Type: Grant
    Filed: December 2, 2009
    Date of Patent: March 20, 2012
    Assignees: Wake Forest University, University of North Carolina-Chapel Hill
    Inventors: Louis S. Kucera, Ronald A. Fleming, Khalid S. Ishaq, Gregory L. Kucera, Susan L. Morris-Natschke
  • Publication number: 20100273740
    Abstract: Provided are compounds, methods and pharmaceutical compositions for treating a host, especially a human, infected with a togavirus, herpes virus and/or coronavirus, and in particular SARS-CoV, cytomegalovirus or varicella-zoster virus. The method in one embodiment comprises administering to that host an effective amount of an anti-togavirus, anti-herpes virus and/or anti-coronavirus phospholipid or a pharmaceutically acceptable salt or prodrug thereof. The phospholipid compound is, e.g., a 3-alkylamido-2-alkoxypropylphosphocholine compound or salt thereof. The compound may be administered alone or in combination and/or alternation with one or more other anti-viral agents.
    Type: Application
    Filed: November 23, 2009
    Publication date: October 28, 2010
    Inventors: Ronald A. FLEMING, Jan V. Hes, Yunsheng Huang, Russ H. Read, Susan L. Morris-Natschke, Khalid S. Ishaq, Louis S. Kucera, Phillip A. Furman
  • Publication number: 20100184718
    Abstract: The invention includes compositions and methods useful for treatment of a virus infection in a mammal by double-targeting the virus (i.e. targeting the virus at more than one stage of the virus life cycle) and thereby inhibiting virus replication. The compositions of the invention include compounds which comprise a phosphocholine moiety covalently conjugated with one or more antiviral agents (e.g. nucleoside analogue, protease inhibitor, etc.) to a lipid backbone. The invention also includes pharmaceutical compositions and kits for use in treatment of a virus infection in mammals. The methods of the invention comprise administering a compound of the invention, a pharmaceutically acceptable salt thereof, or a pharmaceutical composition of the invention, in an amount effective to treat the infection, to a mammal infected with a virus. Additionally, the invention includes compositions and methods useful for combating a cancer in a mammal and for facilitating delivery of a therapeutic agent to a mammalian cell.
    Type: Application
    Filed: December 2, 2009
    Publication date: July 22, 2010
    Inventors: Louis S. KUCERA, Ronald A. Fleming, Khalid S. Ishaq, Gregory L. Kucera, Susan L. Morris-Natschke
  • Patent number: 7638528
    Abstract: The invention includes compositions and methods useful for treatment of a virus infection in a mammal by double-targeting the virus (i.e. targeting the virus at more than one stage of the virus life cycle) and thereby inhibiting virus replication. The compositions of the invention include compounds which comprise a phosphocholine moiety covalently conjugated with one or more antiviral agents (e.g. nucleoside analogue, protease inhibitor, etc.) to a lipid backbone. The invention also includes pharmaceutical compositions and kits for use in treatment of a virus infection in mammals. The methods of the invention comprise administering a compound of the invention, a pharmaceutically acceptable salt thereof, or a pharmaceutical composition of the invention, in an amount effective to treat the infection, to a mammal infected with a virus. Additionally, the invention includes compositions and methods useful for combating a cancer in a mammal and for facilitating delivery of a therapeutic agent to a mammalian cell.
    Type: Grant
    Filed: April 6, 2006
    Date of Patent: December 29, 2009
    Assignees: Wake Forest University School of Medicine, The University of North Carolina at Chapel Hill
    Inventors: Louis S. Kucera, Ronald A. Fleming, Khalid S. Ishaq, Gregory L. Kucera, Susan L. Morris-Natschke
  • Patent number: 7309696
    Abstract: The invention includes compositions and methods useful for treatment of a virus infection in a mammal by double-targeting the virus (i.e. targeting the virus at more than one stage of the virus life cycle) and thereby inhibiting virus replication. The compositions of the invention include compounds which comprise a phosphocholine moiety covalently conjugated with one or more antiviral agents (e.g. nucleoside analogue, protease inhibitor, etc.) to a lipid backbone. The invention also includes pharmaceutical compositions and kits for use in treatment of a virus infection in mammals. The methods of the invention comprise administering a compound of the invention, a pharmaceutically acceptable salt thereof, or a pharmaceutical composition of the invention, in an amount effective to treat the infection, to a mammal infected with a virus. Additionally, the invention includes compositions and methods useful for combating a cancer in a mammal and for facilitating delivery of a therapeutic agent to a mammalian cell.
    Type: Grant
    Filed: December 30, 2003
    Date of Patent: December 18, 2007
    Assignees: Wake Forest University, University of North Carolina at Chapel Hill
    Inventors: Louis S. Kucera, Ronald A. Fleming, Khalid S. Ishaq, Gregory L. Kucera, Susan L. Morris-Natschke
  • Patent number: 7026469
    Abstract: The invention includes compositions and methods useful for treatment of a virus infection in a mammal by double-targeting the virus (i.e. targeting the virus at more than one stage of the virus life cycle) and thereby inhibiting virus replication. The compositions of the invention include compounds, which comprise a phosphocholine moiety covalently conjugated with one or more therapeutic agents (e.g. nucleoside analogue, protease inhibitor, etc.) to a lipid backbone. The invention also includes pharmaceutical compositions for use in treatment of a virus infection in mammals. The methods of the invention comprise administering a compound of the invention, a pharmaceutically acceptable salt or a prodrug thereof, or a pharmaceutical composition of the invention, in an amount effective to treat the infection, to a mammal infected with a virus.
    Type: Grant
    Filed: April 27, 2001
    Date of Patent: April 11, 2006
    Assignees: Wake Forest University School of Medicine, University of North Carolina at Chapel
    Inventors: Louis S. Kucera, Ronald A. Fleming, Khalid S. Ishaq, Gregory L. Kucera, Susan L. Morris-Natschke
  • Publication number: 20040161398
    Abstract: The invention includes compositions and methods useful for treatment of a virus infection in a mammal by double-targeting the virus (i.e. targeting the virus at more than one stage of the virus life cycle) and thereby inhibiting virus replication. The compositions of the invention include compounds which comprise a phosphocholine moiety covalently conjugated with one or more antiviral agents (e.g. nucleoside analogue, protease inhibitor, etc.) to a lipid backbone. The invention also includes pharmaceutical compositions and kits for use in treatment of a virus infection in mammals. The methods of the invention comprise administering a compound of the invention, a pharmaceutically acceptable salt thereof, or a pharmaceutical composition of the invention, in an amount effective to treat the infection, to a mammal infected with a virus. Additionally, the invention includes compositions and methods useful for combating a cancer in a mammal and for facilitating delivery of a therapeutic agent to a mammalian cell.
    Type: Application
    Filed: December 30, 2003
    Publication date: August 19, 2004
    Applicants: University of North Carolina at Chapel Hill, Wake Forest University
    Inventors: Louis S. Kucera, Ronald A. Fleming, Khalid S. Ishaq, Gregory L. Kucera, Susan L. Morris-Natschke
  • Patent number: 6670341
    Abstract: The invention includes compositions and methods useful for treatment of a virus infection in a mammal by double-targeting the virus (i.e. targeting the virus at more than one stage of the virus life cycle) and thereby inhibiting virus replication. The compositions of the invention include compounds which comprise a phosphocholine moiety covalently conjugated with one or more antiviral agents (e.g. nucleoside analogue, protease inhibitor, etc.) to a lipid backbone. The invention also includes pharmaceutical compositions and kits for use in treatment of a virus infection in mammals. The methods of the invention comprise administering a compound of the invention, a pharmaceutically acceptable salt thereof, or a pharmaceutical composition of the invention, in an amount effective to treat the infection, to a mammal infected with a virus. Additionally, the invention includes compositions and methods useful for combating a cancer in a mammal and for facilitating delivery of a therapeutic agent to a mammalian cell.
    Type: Grant
    Filed: October 19, 2000
    Date of Patent: December 30, 2003
    Assignees: Wake Forest University Health Sciences, The University of North Carolina at Chapel Hill
    Inventors: Louis S. Kucera, Ronald A. Fleming, Khalid S. Ishaq, Gregory L. Kucera, Susan L. Morris-Natschke
  • Publication number: 20020082242
    Abstract: The invention includes compositions and methods useful for treatment of a virus infection in a mammal by double-targeting the virus (i.e. targeting the virus at more than one stage of the virus life cycle) and thereby inhibiting virus replication. The compositions of the invention include compounds, which comprise a phosphocholine moiety covalently conjugated with one or more therapeutic agents (e.g. nucleoside analogue, protease inhibitor, etc.) to a lipid backbone. The invention also includes pharmaceutical compositions for use in treatment of a virus infection in mammals. The methods of the invention comprise administering a compound of the invention, a pharmaceutically acceptable salt or a prodrug thereof, or a pharmaceutical composition of the invention, in an amount effective to treat the infection, to a mammal infected with a virus.
    Type: Application
    Filed: April 27, 2001
    Publication date: June 27, 2002
    Inventors: Louis S. Kucera, Ronald A. Fleming, Khalid S. Ishaq, Gregory L. Kucera, Susan L. Morris-Natschke