Extending the success of cellular immunotherapies against blood cancers to the realm of solid tumors will require improved in vitro models that reveal therapeutic modes of action at the molecular level. Here we describe a system, called BEHAV3D, developed to study the dynamic interactions of immune cells and patient cancer organoids by means of imaging and transcriptomics. We apply BEHAV3D to live-track >150,000 engineered T cells cultured with patient-derived, solid-tumor organoids, identifying a 'super engager' behavioral cluster comprising T cells with potent serial killing capacity. Among other T cell concepts we also study cancer metabolome-sensing engineered T cells (TEGs) and detect behavior-specific gene signatures that include a gr...
Activation of the immune system, the body’s own anti-cancer defense, is a promising approach for a r...
Overcoming tumor-mediated immunosuppression and enhancing cytotoxic T-cell activity within the tumor...
Though Vγ9Vδ2-T cells constitute only a small fraction of the total T cell population in human perip...
Cancer immunotherapies have shown substantial clinical activity for a subset of patients with epithe...
International audienceCytotoxic T cells are important components of natural anti-tumor immunity and ...
Immunotherapy has revolutionized the treatment of cancer and newer approaches including the adoptive...
At the heart of most cancer immunotherapies are the specific interactions between tumor-infiltrating...
Immunotherapy efficacy relies on the crosstalk within the tumor microenvironment between cancer and ...
Microfluidic culture has the potential to revolutionize cancer diagnosis and therapy. Indeed, severa...
The unconventional γδT cells share the property of innate and adaptive immunity that allows recognit...
Engineered T cells are proven cancer therapeutics capable of executing potent antigen-dependent cell...
Recent advances in 3D culture technology allow embryonic and adult mammalian stem cells to generate ...
Immunotherapy is a powerful therapeutic approach able to re-educate the immune system to fight cance...
Cell-based therapeutics have become a powerful method to combat cancer. Unlike small-molecule drugs ...
Activation of the immune system, the body’s own anti-cancer defense, is a promising approach for a r...
Overcoming tumor-mediated immunosuppression and enhancing cytotoxic T-cell activity within the tumor...
Though Vγ9Vδ2-T cells constitute only a small fraction of the total T cell population in human perip...
Cancer immunotherapies have shown substantial clinical activity for a subset of patients with epithe...
International audienceCytotoxic T cells are important components of natural anti-tumor immunity and ...
Immunotherapy has revolutionized the treatment of cancer and newer approaches including the adoptive...
At the heart of most cancer immunotherapies are the specific interactions between tumor-infiltrating...
Immunotherapy efficacy relies on the crosstalk within the tumor microenvironment between cancer and ...
Microfluidic culture has the potential to revolutionize cancer diagnosis and therapy. Indeed, severa...
The unconventional γδT cells share the property of innate and adaptive immunity that allows recognit...
Engineered T cells are proven cancer therapeutics capable of executing potent antigen-dependent cell...
Recent advances in 3D culture technology allow embryonic and adult mammalian stem cells to generate ...
Immunotherapy is a powerful therapeutic approach able to re-educate the immune system to fight cance...
Cell-based therapeutics have become a powerful method to combat cancer. Unlike small-molecule drugs ...
Activation of the immune system, the body’s own anti-cancer defense, is a promising approach for a r...
Overcoming tumor-mediated immunosuppression and enhancing cytotoxic T-cell activity within the tumor...
Though Vγ9Vδ2-T cells constitute only a small fraction of the total T cell population in human perip...