The promising clinical results obtained with engineered T cells, including chimeric antigen receptor (CAR) therapy, call for further advancements to facilitate and broaden their applicability. One potentially beneficial innovation is to exploit new T cell sources that reduce the need for autologous cell manufacturing and enable cell transfer across histocompatibility barriers. Here we review emerging T cell engineering approaches that utilize alternative T cell sources, which include virus-specific or T cell receptor-less allogeneic T cells, expanded lymphoid progenitors, and induced pluripotent stem cell (iPSC)-derived T lymphocytes. The latter offer the prospect for true off-the-shelf, genetically enhanced, histocompatible cell therapy pr...
Chimeric antigen receptor (CAR) engineered T cell therapies individually prepared for each patient w...
Accumulating clinical evidence suggests that adoptive T-cell immunotherapy could be a promising opti...
Engineering the immune system against cancer ideally provides surgical precision against the antigen...
The promising clinical results obtained with engineered T cells, including chimeric antigen receptor...
The promising clinical results obtained with engineered T cells, including chimeric antigen receptor...
Adoptive T cell transfer for cancer and chronic infection is an emerging field that shows promise in...
Recent outstanding clinical results produced by engineered T cells, including chimeric antigen recep...
Adoptive transfer of antigen-specific T lymphocytes is an effective form of immunotherapy for persis...
Adoptive transfer of T cells gene-engineered with antigen-specific receptors, whether it be chimeric...
The clinical outcome of the traditional adoptive cancer immunotherapy approaches involving the admin...
Adoptive cell therapy, especially chimeric antigen receptor (CAR) therapy, has revolutionized cancer...
Immunotherapy constitutes an exciting and rapidly evolving field, and the demonstration that genetic...
Adoptive T cell therapies can produce objective clinical responses in patients with hematologic and ...
Adoptive transfer of receptor-engineered T cells has produced impressive results in treating patient...
Introduction: Adoptive cell transfer (ACT) using T cells genetically engineered to express tumor-spe...
Chimeric antigen receptor (CAR) engineered T cell therapies individually prepared for each patient w...
Accumulating clinical evidence suggests that adoptive T-cell immunotherapy could be a promising opti...
Engineering the immune system against cancer ideally provides surgical precision against the antigen...
The promising clinical results obtained with engineered T cells, including chimeric antigen receptor...
The promising clinical results obtained with engineered T cells, including chimeric antigen receptor...
Adoptive T cell transfer for cancer and chronic infection is an emerging field that shows promise in...
Recent outstanding clinical results produced by engineered T cells, including chimeric antigen recep...
Adoptive transfer of antigen-specific T lymphocytes is an effective form of immunotherapy for persis...
Adoptive transfer of T cells gene-engineered with antigen-specific receptors, whether it be chimeric...
The clinical outcome of the traditional adoptive cancer immunotherapy approaches involving the admin...
Adoptive cell therapy, especially chimeric antigen receptor (CAR) therapy, has revolutionized cancer...
Immunotherapy constitutes an exciting and rapidly evolving field, and the demonstration that genetic...
Adoptive T cell therapies can produce objective clinical responses in patients with hematologic and ...
Adoptive transfer of receptor-engineered T cells has produced impressive results in treating patient...
Introduction: Adoptive cell transfer (ACT) using T cells genetically engineered to express tumor-spe...
Chimeric antigen receptor (CAR) engineered T cell therapies individually prepared for each patient w...
Accumulating clinical evidence suggests that adoptive T-cell immunotherapy could be a promising opti...
Engineering the immune system against cancer ideally provides surgical precision against the antigen...