Nova Patents
EP2819701B2

Immunotherapeutic molecules and uses

Abstract

This record has no abstract on file.

EP2819701B2, drawing sheet 1
Sheet 1 of 26

Term

6.4 yearsleft in the term

Expires 28 February 2033.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

10 claims: 8 independent, 2 dependent

  1. 1
    A molecule for redirecting T cells to tumour cells comprising:(i) a targeting moiety capable of directly targeting to tumour cells wherein the targeting moiety is an antibody or an antigen-binding fragment thereof that binds to an antigen expressed by the tumour cells, (ii) a further moiety that has a masked T cell binding region so as to prevent binding of the further moiety to a T cell, wherein the masked T cell binding region is masked by one or more masking moieties selected from the group consisting of an immune cell surface antigen and an immunoglobulin domain, and (iii) one or more peptide linkers comprising one or more protease cleavage sites that are cleavable selectively by a protease that resides in the vicinity of the tumour cells;wherein the further moiety is an antibody or an antigen-binding fragment thereof that binds to CD3 or the T cell receptor (TCR) on the surface of a T cell;wherein the masked T cell binding region is capable of being selectively unmasked by selective cleavage of the one or more protease cleavage sites of the one or more peptide linkers when the molecule is in the vicinity of the tumour cells so as to allow binding of the further moiety to a T cell;wherein either: (a) the further moiety comprises two or more immunoglobulin domains joined by the one or more linkers, which are of insufficient length to allow pairing between the immunoglobulin domains;or (b) the one or more peptide linkers are between the further moiety and the one or more masking moieties.
  2. 2
    A molecule according to Claim 1, wherein the further moiety is a single chain antibody construct such as a scFv antibody, or wherein the further moiety is muromonab-CD3 (OKT3)
  3. 3
    A molecule according to Claim 1 or 2, wherein the protease that resides in the vicinity of the tumour cells induces a conformational change in the further moiety that unmasks the T cell binding region, (i) optionally wherein the further moiety is a scFv antibody in which the linker that joins the heavy chain variable domain (VH) and light chain variable domain (VL) is of insufficient length to allow pairing of the VH and VL domains such that the scFv antibody cannot bind to the T cell, and wherein, when in the vicinity of the tumour cells, the agent in the vicinity of the tumour cells induces pairing of the VH and VL domains such that the scFv antibody can bind to the T cell, and (ii) further optionally wherein the agent in the vicinity of the tumour cells induces pairing of the VH and VL domains by selectively cleaving one or more cleavage sites in said linker, and optionally wherein the VH domain and VL domain of the scFv antibody are joined by a peptide linker of 14 or less amino acids.
  4. 4
    A molecule according to any of Claims 1-3, wherein (i) the one or more masking moieties are covalently attached to the molecule by the one or more peptide linkers that contain the one or more protease cleavage sites; and/or (ii) the presence of the one or more masking moieties promotes a conformation of the further moiety such that the T cell binding region is not exposed; and/or (iii) the masking moiety is (a) an immune cell surface antigen, optionally wherein the molecule further comprises a further moiety which comprises a VH domain and a VL domain that are capable of specifically binding to a T cell, and a peptide linker which joins the further moiety to an immune cell surface antigen, such that the immune cell surface antigen binds to and masks the binding regions of the VH and VL domains so as to prevent binding of the further moiety to a T cell, wherein selective cleavage of one or more protease cleavage sites in the peptide linker, when in the vicinity of the tumour cells, releases the immune cell surface antigen from the VH and VL domains so as to allow binding of the further moiety to a T cell; or (b) the masking moiety is an immunoglobulin domain, optionally wherein the molecule further comprises:1) a further moiety which comprises a VH domain and a VL domain that are capable of specifically binding to a T cell, a peptide linker which joins the VH domain of the further moiety to a CH domain of a first masking moiety, and a peptide linker which joins the VL domain of the further moiety to a CL domain of a second masking moiety, such that the CH and CL domains of the first and second masking moieties mask the binding regions of the VH and VL domains so as to prevent binding of the further moiety to a T cell, and wherein selective cleavage of one or more protease cleavage sites in said peptide linkers, when in the vicinity of the tumour cells, releases the first and second masking moieties from the further moiety so as to allow binding of the further moiety to a T cell, or 2) a further moiety which comprises separately a first VH and a first VL domain which when paired are capable of specifically binding to a T cell, a peptide linker which joins the first VH domain to a second VL domain of a first masking moiety, and a peptide linker which joins the first VL domain to a second VH domain of a second masking moiety, such that the first VH and first VL domains of the further moiety are not paired and the further moiety cannot bind to the T cell, and wherein selective cleavage of one or more protease cleavage sites in said peptide linkers, when in the vicinity of the tumour cells, allows pairing of the first VH and first VL domains such that the further moiety can bind to the T cell, optionally wherein the peptide linker which joins the first VH domain to the second VL domain is of a sufficient length to allow pairing of the first VH domain to the second VL domain, and wherein the peptide linker which joins the first VL domain to the second VH domain is of a sufficient length to allow pairing of the first VL domain to the second VH domain.
  5. 5
    A molecule according to any of Claims 1-4, wherein the targeting moiety is an antibody or antigen-binding fragment thereof capable of directly targeting to tumour cells, optionally wherein the antibody is:i) specific for any of Her2/Neu;CD22;EpCAM (CD326);EGFR;PMSA;CD30;CD20;CD33;membrane IgE;IgE Receptor (CD23), CD80;CD86;CO2;CA125;Carbonic Anhydrase IX;CD70;CD74;CD56;CD40;CD19;c-meUHGFR;TRAIL-R1;DR5;PD-1;PD1 L;IGF-1 R;VEGF-R2;Prostate stem cell antigen (PSCA);MUC1;CanAg;Mesothelin;P-cadherin;Myostatin(GDF8);Cripto (TDGF1);ACVRL 1/ALK1 ;MUC5AC;CEACAM;SLC44A4;CD2/CS1;CD137;CXCR4;Neuropilin 1;Glypican;HER3/EGFR;PDGFRa and EphA2 and/or ii) is an anti-epidermal growth factor receptor antibody such as Cetuximab, an anti-Her2 antibody, an anti-CD20 antibody such as Rituximab, an anti-CD22 antibody such as Inotuzumab, an anti-CD70 antibody, an anti-CD33 antibody such as hp67.6 or Gemtuzumab, an anti-MUC1 antibody such as GP1 .4 and SM3, an anti-CD40 antibody, an anti-CD74 antibody, an anti-P-cadherin antibody, an anti-EpCAM antibody, an anti-CD138 antibody, an anti-E-cadherin antibody, an anti-CEA antibody and an anti-FGFR3 antibody.
  6. 6
    A molecule according to any of Claims 1-5, wherein each of the further moiety and targeting moiety, and the one or more masking moieties, are parts of a single polypeptide chain.
  7. 7
    A molecule according to any of Claims 1-6, for use in medicine.
  8. 8
    A pharmaceutical composition, comprising a molecule according to any of Claims 1-6, and a pharmaceutically acceptable carrier, diluent or excipient.
  9. 9
    A molecule according to any of Claims 1-6, for use in preventing or treating a tumour in a subject, optionally wherein the subject is administered a further therapeutic agent suitable for preventing or treating the condition, optionally wherein the further therapeutic agent is any one or more of an immunostimulatory drug, an anti-cancer agent, and an inhibitor of an antibody response against the agent of the invention.
  10. 10
    A composition comprising (i) a molecule according to any of Claims 1-6 and (ii) a further therapeutic agent suitable for preventing or treating a tumour