Patent classifications
C12Y207/01137
Methods and Pharmaceutical Compositions for Treating Lymphoid Malignancy
The present invention provides, inter alia, methods for treating, preventing, or ameliorating the effects of a lymphoid malignancy, such as those associated with a mutated phosphatase and tensin homolog (PTEN) gene, or T-cell acute lymphoblastic leukemia (T-ALL). These methods include administering to a subject an effective amount of a phosphoinositide 3-kinase-delta (PI3K?) inhibitor and a phosphoinositide 3-kinase-gamma (PI3K?) inhibitor. The present invention also provides pharmaceutical compositions for treating the effects of a lymphoid malignancy. This invention further provides a method for identifying a subject who may benefit from co-treatment with a PI3K? inhibitor and a PI3K? inhibitor. This method includes determining from a sample of the subject whether the subject has a mutated PTEN gene. Additionally, this invention provides methods for identifying a compound that has both PI3K? and PI3K? inhibitory activity.
NOVEL SELECTIVE PI3K DELTA INHIBITORS
The present invention relates to selective inhibitors of PI3K delta protein kinases, methods of preparing them, pharmaceutical compositions containing them and methods of treatment and/or prevention of kinase mediated diseases or disorders with them.
INHIBITORS OF HUMAN PHOSPHATIDYLINOSITOL 3-KINASE DELTA
Methods of inhibiting phosphatidylinositol 3-kinase delta isoform (PI3K) activity, and methods of treating diseases, such as disorders of immunity and inflammation, in which PI3K plays a role in leukocyte function are disclosed. Preferably, the methods employ active agents that selectively inhibit PI3K, while not significantly inhibiting activity of other PI3K isoforms. Compounds are provided that inhibit PI3K activity, including compounds that selectively inhibit PI3K activity. Methods of using PI3K inhibitory compounds to inhibit cancer cell growth or proliferation are also provided. Accordingly, the invention provides methods of using PI3K inhibitory compounds to inhibit PI3K-mediated processes in vitro and in vivo.
Target for treating hepatitis B virus
A method of treating hepatitis B virus includes inhibiting the activities of AKT and/or mTOR, inhibiting the synthesis of 5-phosphate ribose, and inhibiting HBV DNA and HBV cccDNA.
TARGET FOR TREATING HEPATITIS B VIRUS
A method of treating hepatitis B virus includes inhibiting the activities of AKT and/or mTOR, inhibiting the synthesis of 5-phosphate ribose, and inhibiting HBV DNA and HBV cccDNA.
Selective PI3K delta inhibitors
The present invention relates to selective inhibitors of PI3K delta protein kinases, methods of preparing them, pharmaceutical compositions containing them and methods of treatment and/or prevention of kinase mediated diseases or disorders with them.
Inhibitors of human phosphatidylinositol 3-kinase delta
Methods of inhibiting phosphatidylinositol 3-kinase delta isoform (PI3K) activity, and methods of treating diseases, such as disorders of immunity and inflammation, in which PI3K plays a role in leukocyte function are disclosed. Preferably, the methods employ active agents that selectively inhibit PI3K, while not significantly inhibiting activity of other PI3K isoforms. Compounds are provided that inhibit PI3K activity, including compounds that selectively inhibit PI3K activity. Methods of using PI3K inhibitory compounds to inhibit cancer cell growth or proliferation are also provided. Accordingly, the invention provides methods of using PI3K inhibitory compounds to inhibit PI3K-mediated processes in vitro and in vivo.
METHODS AND PHARMACEUTICAL COMPOSITIONS FOR TREATING LYMPHOID MALIGNANCY
The present invention provides, inter alia, methods for treating, preventing, or ameliorating the effects of a lymphoid malignancy, such as those associated with a mutated phosphatase and tensin homolog (PTEN) gene, or T-cell acute lymphoblastic leukemia (T-ALL). These methods include administering to a subject an effective amount of a phosphoinositide 3-kinase-delta (PI3K) inhibitor and a phosphoinositide 3-kinase-gamma (PI3K) inhibitor. The present invention also provides pharmaceutical compositions for treating the effects of a lymphoid malignancy. This invention further provides a method for identifying a subject who may benefit from co-treatment with a PI3K inhibitor and a PI3K inhibitor. This method includes determining from a sample of the subject whether the subject has a mutated PTEN gene. Additionally, this invention provides methods for identifying a compound that has both PI3K and PI3K inhibitory activity.
COMPOSITIONS AND METHODS FOR INDUCING ESR1, PI3K, HER2, AND HER3 IMMUNE RESPONSES
The present disclosure relates to the field of molecular virology, and particularly relates to nucleic acid molecules encoding a modified equine encephalitis virus viral genome or self-replicating RNA (srRNA) construct, pharmaceutical compositions containing the same, and the use of such nucleic acid molecules and compositions for production of desired products in cell cultures or in a living body. Also provided are methods for eliciting an immune response in a subject in need thereof, as well as methods for preventing and/or treating cancer.
INHIBITORS OF HUMAN PHOSPHATIDYLINOSITOL 3-KINASE DELTA
Methods of inhibiting phosphatidylinositol 3-kinase delta isoform (PI3K) activity, and methods of treating diseases, such as disorders of immunity and inflammation, in which PI3K plays a role in leukocyte function are disclosed. Preferably, the methods employ active agents that selectively inhibit PI3K, while not significantly inhibiting activity of other PI3K isoforms. Compounds are provided that inhibit PI3K activity, including compounds that selectively inhibit PI3K activity. Methods of using PI3K inhibitory compounds to inhibit cancer cell growth or proliferation are also provided. Accordingly, the invention provides methods of using PI3K inhibitory compounds to inhibit PI3K-mediated processes in vitro and in vivo.