Methods for off-the-shelf tumor immunotherapy using allogeneic T-cell precursors
The inventive subject matter relates to methods for treating a T-cell deficiency in a subject in need thereof, comprising administering to said subject a T-cell precursor isolated from an allogeneic donor, provided that said allogeneic donor is not MHC-matched to said subject. The inventive methods can be further enhanced by genetic engineering for targeted immunotherapy.
1. A method for treating a human T-cell deficiency in a subject in need thereof comprising administering to said subject a composition comprising double negative (DN) T cell precursors from an allogeneic donor, wherein said DN T cell precursors consisting essentially of:
cells having a DN2 (CD44 + CD25 + ) phenotype or phenotype of an equivalent human DN precursor thereof,
cells having a DN3 (CD44 − CD25 + ) phenotype or phenotype of an equivalent human DN precursor thereof, or
cells having a DN2 (CD44 + CD25 + ) phenotype or a phenotype of an equivalent human DN precursor thereof and cells having a DN3 (CD44 − CD25 + ) phenotype or phenotype of an equivalent human DN precursor thereof;
wherein said subject does not receive a separate administration of hematopoietic stem cells; wherein the major histocompatibility complex (MEW) of said allogeneic donor is not matched to the WIC of said subject; and wherein the amount of the DN T cell precursors is effective to enhance T-cell reconstitution.
2. The method of claim 1 , wherein said DN T cell precursors are generated by ex vivo culturing of hematopoietic stem cells from the allogeneic donor.
3. The method of claim 1 , wherein said DN T cell precursors consisting essentially of the cells having the DN2(CD44 + CD25 + ) phenotype or phenotype of the equivalent human DN precursor thereof and the cells having the DN3(CD44 − CD25 + ) phenotype or phenotype of the equivalent DN precursor thereof.
4. The method of claim 1 , wherein said DN T cell precursors are derived from lineage lin − Sca-1 + c-kit hi or a human equivalent CD34 + lineage.
5. The method of claim 1 , provided that said method does not comprise administration of immunosuppressive compositions.
6. The method of claim 1 , wherein said T-cell deficiency is selected from the group consisting of acute lymphoblastic leukemia, acute lymphocytic leukemia, acute myelogenous leukemia, aplastic anemia, chronic myelogenous leukemia, desmoplastic small round cell tumor, Ewing's sarcoma, Hodgkin's disease, multiple myeloma, myelodysplasia, Non-Hodgkin's lymphoma, paroxysmal nocturnal hemoglobinuria, radiation poisoning, chronic lymphocytic leukemia, AL amyloidosis, essential thrombocytosis, polycythemia vera, severe aplastic anemia, neuroblastoma, breast tumors, ovarian tumors, renal cell carcinoma, autoimmune disorders, such as systemic sclerosis, osteopetrosis, inherited metabolic disorders, juvenile chronic arthritis, adrenoleukodystrophy, amegakaryocytic thrombocytopenia, sickle cell disease, severe congenital immunodeficiency, Griscelli syndrome type II, Hurler syndrome, Kostmann syndrome, Krabbe disease, metachromatic leukodystrophy, thalassemia, hemophagocytic lymphohistiocytosis, and Wiskott-Aldrich syndrome.
7. The method of claim 2 , wherein said DN T cell precursors are generated by ex vivo culturing said hematopoietic stem cells on a bone marrow derived stromal cell line expressing the Notch ligand Delta-like 1.