Modified monocytes/macrophage expressing chimeric antigen receptors and uses thereof
The present invention includes methods and compositions for treating cancer, whether a solid tumor or a hematologic malignancy. By expressing a chimeric antigen receptor in a monocyte, macrophage or dendritic cell, the modified cell is recruited to the tumor microenvironment where it acts as a potent immune effector by infiltrating the tumor and killing the target cells. One aspect includes a modified cell and pharmaceutical compositions comprising the modified cell for adoptive cell therapy and treating a disease or condition associated with immunosuppression.
1. A modified cell comprising a chimeric antigen receptor (CAR),
wherein the CAR comprises an antigen binding domain, a transmembrane domain and an intracellular domain of a stimulatory and/or co-stimulatory molecule, and
wherein the modified cell has at least one upregulated M1 marker and/or at least one downregulated M2 marker relative to an unmodified cell, and
wherein the modified cell is a macrophage or monocyte.
2. The modified cell of claim 1 , wherein the at least one upregulated M1 marker is or comprises HLA DR, CD86, CD80, or PDL1.
3. The modified cell of claim 1 , wherein the at least one downregulated M2 marker is or comprises CD206 or CD163.
4. The modified cell of claim 1 , wherein the antigen binding domain of the CAR comprises an antibody selected from the group consisting of a monoclonal antibody, a polyclonal antibody, a synthetic antibody, human antibody, humanized antibody, single domain antibody, single chain variable fragment, and antigen-binding fragments thereof.
5. The modified cell of claim 1 , wherein the transmembrane domain of the CAR comprises a CD8 or CD28 transmembrane domain.
6. The modified cell of claim 1 , wherein the intracellular domain of the CAR comprises dual signaling domains.
7. The modified cell of claim 1 , wherein the intracellular domain of the CAR comprises a CD3 zeta intracellular domain.
8. The modified cell of claim 1 , wherein the modified cell exhibits targeted effector activity.
9. The modified cell of claim 8 , wherein the targeted effector activity is directed against a target cell comprising an antigen that specifically binds the antigen binding domain of the CAR.
10. The modified cell of claim 8 , wherein the targeted effector activity is selected from the group consisting of phagocytosis, targeted cellular cytotoxicity, antigen presentation, and cytokine secretion.
11. The modified cell of claim 8 , wherein the targeted effector activity is enhanced by inhibition of CD47 or SIRPα activity.
12. The modified cell of claim 1 , further comprising an agent selected from the group consisting of a nucleic acid, an antibiotic, an anti-inflammatory agent, an antibody or antibody fragments thereof, a growth factor, a cytokine, an enzyme, a protein, a peptide, a fusion protein, a synthetic molecule, an organic molecule, a carbohydrate or the like, a lipid, a hormone, a microsome, a derivative or a variation thereof, and any combination thereof.
13. The modified cell of claim 1 , wherein the modified cell is genetically modified to express the CAR.
14. The modified cell of claim 1 , wherein the modified cell exhibits reduced SIRPα activity relative to an unmodified cell.
15. A pharmaceutical composition comprising the modified cell of claim 1 and a pharmaceutically acceptable carrier.
16. The pharmaceutical composition of claim 15 , wherein at least 35% of the cells in the composition express a CAR.
17. A method for stimulating an immune response to a target tumor cell or tumor tissue in a subject, comprising administering to the subject a therapeutically effective amount of a pharmaceutical composition comprising the modified cell of claim 1 .