IL280915A

Single-chain chimeric polypeptides and uses thereof

Abstract

This record has no abstract on file.

IL280915A, drawing sheet 1
Sheet 1 of 24

Term

No projected expiry on record.

  1. Priority and filed
  2. Published
  3. Today

42 claims: 19 independent, 23 dependent

  1. 1
    WHAT IS CLAIMED IS:1. A single-chain chimeric polypeptide comprising: (i) a first target-binding domain;(ii) a soluble tissue factor domain;and (iii) a second target-binding domain.
  2. 4
    The single-chain chimeric polypeptide of any one of claims 1-3, wherein the soluble tissue factor domain and the second target-binding domain directly abut each other.
  3. 5
    The single-chain chimeric polypeptide of any one of claims 1-3, wherein the single-chain chimeric polypeptide further comprises a linker sequence between the soluble tissue factor domain and the second target-binding domain.
  4. 6
    The single-chain chimeric polypeptide of any one of claims 1-5, wherein the first target-binding domain and the second target-binding domain bind specifically to the same antigen.
  5. 9
    The single-chain chimeric polypeptide of any one of claims 1-5, wherein the first target-binding domain and the second target-binding domain bind specifically to different antigens.
  6. 10
    The single-chain chimeric polypeptide of any one of claims 1-9, wherein one or both of the first target-binding domain and the second target-binding domain is an antigen-binding domain.
  7. 11
    The single-chain chimeric polypeptide of any one of claims 1-10, wherein one or both of the first target-binding domain and the second target-binding domain bind to a target selected from the group consisting of:CD16a, CD28, CD3, CD33, CD20, CD19, CD22, CD123, IL-1R, IL-1, VEGF, IL-6R, IL-4, IL-10, PDL-1, TIGIT, PD-1, TIM3, CTLA4, MICA, MICB, IL-6, IL-8, TNFa, CD26a, CD36, ULBP2, CD30, CD200, IGF1R, MUC4AC, MUC5AC, Trop-2, CMET, EGFR, HER1, HER2, HER3, PSMA, CEA, B7H3, EPCAM, BCMA, P-cadherin, CEACAM5, a UL16-binding protein, HLA-DR, DLL4, TYRO3, AXL, MER, CD122, CD155, PDGFDD, a ligand of TGF-β receptor II (TGF-βRII), a ligand of TGF-βRIII, a ligand of DNAM1, a ligand of NKp46, a ligand of NKp44, a ligand of NKG2D, a ligand of NKp30, a ligand for a scMHCI, a ligand for a scMHCII, a ligand for a scTCR, a receptor for IL-1, a receptor for IL-2, a receptor for IL3, a receptor for IL-7, a receptor for IL-8, a receptor for IL-10, a receptor for IL-12, a receptor for IL-15, a receptor for IL-17, a receptor for IL-18, a receptor for IL-21, a receptor for PDGF-DD, a receptor for stem cell factor (SCF), a receptor for stem cell-like tyrosine kinase 3 ligand (FLT3L), a receptor for MICA, a receptor for MICB, a receptor for a ULP16-binding protein, a receptor for CD 155, a receptor for CD 122, and a receptor for CD28.
  8. 12
    The single-chain chimeric polypeptide of any one of claims 1-10, wherein one or both of the first target-binding domain and the second target-binding domain is a soluble interleukin, a soluble cytokine protein, or a soluble cell surface protein.
  9. 14
    The single-chain chimeric polypeptide of any one of claims 1-10, wherein one or both of the first target-binding domain and the second target-binding domain is a soluble interleukin receptor, a soluble cytokine receptor, or a soluble cell surface receptor.
  10. 16
    The single-chain chimeric polypeptide of any one of claims 1-15, wherein the soluble tissue factor domain is a soluble human tissue factor domain.
  11. 18
    The single-chain chimeric polypeptide of any one of claims 1-17, wherein the single-chain chimeric polypeptide further comprises one or more additional targetbinding domains at its N- and/or C-terminus.
  12. 19
    A composition comprising any of the single-chain chimeric polypeptides of claims 1-18.
  13. 23
    A method of inducing or increasing proliferation of an immune cell, the method comprising:contacting an immune cell with an effective amount of any of the single-chain chimeric polypeptides of claims 1-18 or the composition of claim 19 or 20.
  14. 24
    A method of inducing differentiation of an immune cell into a memory or memory-like immune cell, the method comprising:contacting an immune cell with an effective amount of any of the single-chain chimeric polypeptides of claims 1-18 or the composition of claim 19 or 20.
  15. 25
    The method of any one of claims 22-24, wherein the immune cell is contacted in vitro.
  16. 26
    The method of any one of claims 22-24, wherein the immune cell is contacted in vivo.
  17. 27
    The method of any one of claims 22-26, wherein the immune cell is selected from the group consisting of:an immature thymocyte, a peripheral blood lymphocyte, a naive T cell, a pluripotent Th cell precursor, a lymphoid progenitor cell, a Treg cell, a Th 17 cell, a Th22 cell, a Th9 cell, a Th2 cell, a Thl cell, a Th3 cell, γδ T cell, an αβ T cell, a tumor-infiltrating T cell, a CD8+ T cell, a CD4+ T cell, a natural killer T cell, a mast cell, a macrophage, a neutrophil, a dendritic cell, a basophil, an eosinophil, and a natural killer cell.
  18. 28
    The method of any one of claims 22-27, wherein the immune cell has previously been genetically modified to express a chimeric antigen receptor or a recombinant T-cell receptor.
  19. 29
    The method of any one of claims 22-28, wherein the method further comprises administering the immune cell to a subject in need thereof.
  20. 36
    Nucleic acid encoding any of the single-chain chimeric polypeptides of any one of claims 1-18.
  21. 39
    A method of producing a single-chain chimeric polypeptide, the method comprising:culturing the cell of claim 38 in a culture medium under conditions sufficient to result in the production of the single-chain chimeric polypeptide;and recovering the single-chain chimeric polypeptide from the cell and/or the culture medium.
  22. 42
    The single-chain chimeric polypeptide of any one of claims 1-18, wherein the soluble tissue factor domain comprises or consists of a sequence from a wildtype soluble human tissue factor.
Independent claims22