Modified cell expansion and uses thereof
The present disclosure relates to compositions and methods for enhancing T cell response and/or CAR cell expansion and/or maintenance in vivo and/or in vitro. For example, a method of enhancing T cell-based therapy comprises administering genetically modified T cells comprising a first chimeric antigen receptor (CAR) and a second CAR, wherein a binding domain of the first CAR binds a first antigen, and a binding domain of the second CAR binds a second antigen. The first antigen is different from the second antigen. In embodiments, the first CAR binds a surface molecule or antigen of a white blood cell.
1. A bispecific chimeric antigen receptor (CAR), comprising:
a first antigen binding domain, a second antigen binding domain, a cytoplasmic domain, and a transmembrane domain, wherein the first antigen binding domain comprises amino acid SEQ ID NO: 5, and the second antigen antigen binding domain binds GUCY2C.
2. The bispecific CAR of claim 1 , wherein the cytoplasmic domain of the bispecific CAR comprises a co-stimulatory domain, and a CD3 zeta domain.
3. The bispecific CAR of claim 2 , wherein the co-stimulatory domain comprises the intracellular domain of CD27, CD28, 4-1BB, OX40, CD30, CD40, PD-1, ICOS, lymphocyte function-associated antigen-1 (LFA-1), CD2, CD7, LIGHT, NKG2C, B7-H3, a ligand that binds CD83, or a combination thereof.
4. The bispecific CAR of claim 1 , wherein the first antigen binding domain comprises the amino acid sequence of the SEQ ID NO: 5, and the second antigen binding domain comprises the amino acid sequence of the SEQ ID NO: 11.
5. A polynucleotide encoding the bispecific CAR of claim 1 .
6. A vector comprising the polynucleotide of claim 5 .
7. A cell comprising the polynucleotide of claim 5 .