NOVEL APPROACH FOR TREATMENT OF CANCER USING IMMUNOMODULATION
The present invention discloses a method of treating, preventing or ameliorating tumor growth by administering a therapeutic agent that selectively inhibits dipeptidyl peptidase including fibroblast activation protein and dipeptidyl peptidase 8/9 in combination with an immune checkpoint inhibitor. The method specifically discloses use of Talabostat in combination with an immune checkpoint inhibitor, its pharmaceutical composition and process of preparing such composition.
1 . A pharmaceutical composition comprising an effective amount of Talabostat and an effective amount of Nivolumab.
2 . A method of enhancing an immune response in a subject, comprising administering an effective amount of a therapeutic agent that act on tumors, cells in their microenvironment, immune cells or secreted products through inhibition of the activity of dipeptidyl peptidase in combination with an immune checkpoint inhibitor to enhance the immune response in the subject, wherein the subject has been diagnosed for tumor.
3 . The method according to claim 2 , wherein therapeutic agent is selected from a group comprising of small molecule, antibody, nanobody, engineered peptide, engineered protein, vaccine, siRNA therapy or autologous immune enhancement therapy.
4 . The method of claim 2 , wherein the therapeutic agent comprises a selective dipeptidyl peptidase inhibitor which includes the inhibition of fibroblast activation protein and/or dipeptidyl peptidase 8/9.
5 . The method of claim 3 , wherein said small molecule is Talabostat preferably Talabostat mesylate.
6 . A method of treatment of proliferative diseases, including tumor, which comprises administering to a subject in need thereof a synergistically, therapeutically effective amount of a selective dipeptidyl peptidase inhibitor in combination with an immune checkpoint inhibitor.
7 . The method of claim 6 , wherein said immune checkpoint inhibitor is selected from the group comprising of PD-1 antagonist, PD-L1 antagonist, PD-L2 antagonist, CTLA4 antagonist.
8 . The method of claim 6 , wherein selective dipeptidyl peptidase inhibitor is selected from a group comprising of small molecule, antibody, nanobody, engineered peptide, engineered protein, vaccine, siRNA therapy or autologous immune enhancement therapy, preferably small molecule.
9 . The method of claim 8 , wherein said small molecule is Talabostat.