MODIFIED T-CELLS FOR USE IN THE TREATMENT OF GASTROESOPHAGEAL CANCER
The disclosure relates to a method of treating gastroesophageal cancer, and to a population of modified T cells expressing a heterologous TCR for use in such method.
1 . A method of treating gastroesophageal cancer in an individual, comprising administering to the individual a population of modified T cells comprising a heterologous CD8 co-receptor and a heterologous T-cell receptor (TCR) capable of binding to a peptide antigen of MAGE-A4.
2 . The method of claim 1 , wherein the method further comprises administering an additional anti-cancer therapy to the individual, optionally wherein the population of modified T cells and the additional anti-cancer therapy are administered in the same line of therapy.
3 . The method of claim 2 , wherein:
(a) administration of the additional anti-cancer therapy begins before administration of the population of modified T cells, and optionally continues after administration of the population of modified T cells; or
(b) administration of the additional anti-cancer therapy begins after administration of the population of modified T cells.
4 . The method of claim 2 wherein the anti-cancer therapy comprises a chemotherapy and/or a targeted therapy.
5 . The method of claim 2 , wherein the anti-cancer therapy comprises (i) paclitaxel and/or ramucirumab, or (ii) oxaliplatin.
6 . The method of claim 1 , wherein the method further comprises administering a checkpoint inhibitor to the individual, optionally wherein:
(a) the population of modified T cells and the checkpoint inhibitor are administered in the same line of therapy; and/or
(b) the checkpoint inhibitor comprises a Programmed Death-1 (PD-1) axis binding antagonist, optionally nivolumab or pembrolizumab.
7 . The method of claim 6 , wherein:
(a) administration of the checkpoint inhibitor begins at the same time administration of the population of modified T cells and continues after administration of the population of modified T cells; and/or
(b) the method comprises administering an additional anti-cancer therapy to the individual and administration of the checkpoint inhibitor begins after administration of the additional anti-cancer therapy and the population of modified T cells.
8 . The method of claim 1 , wherein the gastroesophageal cancer has relapsed following curative intent treatment for locally advanced cancer, or is the first diagnosis of unresectable locally advanced cancer or metastatic cancer.
9 . The method of claim 8 , wherein the method comprises:
(a) administering oxaliplatin to the individual and administration of oxaliplatin begins before administration of the population of modified T cells and optionally continues after administration of the population of modified T cells; and
(b) administering a checkpoint inhibitor and/or an additional anti-cancer therapy to the individual and administration of the checkpoint inhibitor and/or additional anti-cancer therapy begins after administration of the population of modified T cells, optionally wherein the checkpoint inhibitor is a PD-1 axis binding antagonist and/or the additional anti-cancer therapy is a chemotherapy such as fluorouracil.
10 . The method of claim 1 , wherein the gastroesophageal cancer is relapsed gastroesophageal cancer.
11 . The method of claim 10 , wherein the gastroesophageal cancer has relapsed following a first-line treatment for gastroesophageal cancer, optionally wherein:
(a) the first-line treatment comprises surgical resection and/or radiation therapy; and/or
(b) the first-line treatment comprises systemic therapy.
12 . The method of claim 10 , wherein:
(a) the method comprises administering an additional anti-cancer therapy to the individual and administration of the additional anti-cancer therapy begins before administration of the population of modified T cells and continues after administration of the population of modified T cells, optionally wherein the method further comprises administering a checkpoint inhibitor to the individual and administration of the checkpoint inhibitor begins after administration of the additional anti-cancer therapy and the population of modified T cells; or
(b) the method comprises administering an additional anti-cancer therapy to the individual and administration of the additional anti-cancer therapy begins after administration of the population of modified T cells, optionally wherein the method further comprises administering a checkpoint inhibitor to the individual and administration of the checkpoint inhibitor begins after administration of the additional anti-cancer therapy and the population of modified T cells;
optionally wherein (i) the anti-cancer therapy comprises paclitaxel and ramucirumab, and/or (ii) the checkpoint inhibitor comprises nivolumab or pembrolizumab.
13 . The method of claim 11 , wherein the gastroesophageal cancer has further relapsed following a second-line treatment for gastroesophageal cancer, optionally wherein:
(a) the second-line treatment comprises surgical resection and/or radiation therapy; and/or
(b) the second-line treatment comprises systemic therapy.
14 . The method of claim 13 , wherein the method comprises administering a checkpoint inhibitor to the individual and
(a) administration of the checkpoint inhibitor begins at the same time administration of the population of modified T cells and continues after administration of the population of modified T cells; or
(b) administration of the checkpoint inhibitor begins after administration of the population of modified T cells;
optionally wherein the checkpoint inhibitor comprises nivolumab or pembrolizumab.
15 . The method of claim 1 , wherein:
(a) the heterologous TCR binds to GVYDGREHTV (SEQ ID NO: 1) in complex with an HLA molecule;
(b) the heterologous TCR comprises an alpha chain amino acid sequence having at least 80% sequence identity to SEQ ID NO: 2 and a beta chain amino acid sequence having at least 80% sequence identity to SEQ ID NO: 3; and/or
(c) the CD8 co-receptor is CD8α.
16 . The method of claim 1 , wherein the modified T cells are autologous with respect to the individual, optionally wherein the method comprises producing the population by:
(a) obtaining peripheral blood mononuclear cells (PBMCs) from the individual;
(b) selecting T cells from the PBMCs; and
(c) modifying the selected T cells to express the heterologous CD8 co-receptor and the heterologous TCR;
further optionally wherein the gastroesophageal cancer is relapsed gastroesophageal cancer and wherein one or more of steps (a) to (c) are performed prior to relapse.
17 . A population of modified T cells comprising a heterologous CD8 co-receptor and a heterologous T-cell receptor capable of binding to a peptide antigen of MAGE-A4, for use in the method of claim 1 .