Iron–dextran nanoparticles functionalized with T cell activating proteins have been used to study T cell receptor (TCR) signaling. However, nanoparticle triggering of membrane receptors is poorly understood and may be sensitive to physiologically regulated changes in TCR clustering that occur after T cell activation. Nano-aAPC bound 2-fold more TCR on activated T cells, which have clustered TCR, than on naive T cells, resulting in a lower threshold for activation. To enhance T cell activation, a magnetic field was used to drive aggregation of paramagnetic nano-aAPC, resulting in a doubling of TCR cluster size and increased T cell expansion <i>in vitro</i> and after adoptive transfer <i>in vivo</i>. T cells activated by nano-aAPC in a magnet...
Abstract Cancer immunotherapy has shown promising therapeutic results in the clinic, albeit only in ...
Although adoptive T-cell therapy has been successful in hematological malignancy treatment, its appl...
International audienceNanotherapy using targeted magnetic nanoparticles grafted with peptidic ligand...
T cell activation requires the coordination of a variety of signaling molecules including T cell rec...
Artificial Antigen Presenting Cells (aAPC) are synthetic platforms for T cell activation, made by c...
N anoparticles functionalized with sur-face ligands are frequently used for targeted delivery of dru...
Particles engineered to engage and interact with cell surface ligands and to modulate cells can be h...
Adoptive T-cell transfer for cancer therapy relies on both effective ex vivo T-cell expansion and in...
For the conversion of immunologically cold tumors, characterized by a low T cell infiltration, into ...
Background: Magnetic nanoparticles (NPs) are of particular interest in biomedical research, and have...
[Background] Adoptive T cell-transfer (ATC) therapy is a highly promising cancer-treatment approach....
T lymphocytes are highly dynamic elements of the immune system with a tightly regulated migration. ...
Electrospun polymer nanofibers with entrapped magnetic nanoparticles (magnetic NP-NF) represent a no...
Electrospun polymer nanofibers with entrapped magnetic nanoparticles (magnetic NP-NF) represent a no...
Adoptive immunotherapy (AIT) can mediate durable regression of cancer, but widespread adoption of AI...
Abstract Cancer immunotherapy has shown promising therapeutic results in the clinic, albeit only in ...
Although adoptive T-cell therapy has been successful in hematological malignancy treatment, its appl...
International audienceNanotherapy using targeted magnetic nanoparticles grafted with peptidic ligand...
T cell activation requires the coordination of a variety of signaling molecules including T cell rec...
Artificial Antigen Presenting Cells (aAPC) are synthetic platforms for T cell activation, made by c...
N anoparticles functionalized with sur-face ligands are frequently used for targeted delivery of dru...
Particles engineered to engage and interact with cell surface ligands and to modulate cells can be h...
Adoptive T-cell transfer for cancer therapy relies on both effective ex vivo T-cell expansion and in...
For the conversion of immunologically cold tumors, characterized by a low T cell infiltration, into ...
Background: Magnetic nanoparticles (NPs) are of particular interest in biomedical research, and have...
[Background] Adoptive T cell-transfer (ATC) therapy is a highly promising cancer-treatment approach....
T lymphocytes are highly dynamic elements of the immune system with a tightly regulated migration. ...
Electrospun polymer nanofibers with entrapped magnetic nanoparticles (magnetic NP-NF) represent a no...
Electrospun polymer nanofibers with entrapped magnetic nanoparticles (magnetic NP-NF) represent a no...
Adoptive immunotherapy (AIT) can mediate durable regression of cancer, but widespread adoption of AI...
Abstract Cancer immunotherapy has shown promising therapeutic results in the clinic, albeit only in ...
Although adoptive T-cell therapy has been successful in hematological malignancy treatment, its appl...
International audienceNanotherapy using targeted magnetic nanoparticles grafted with peptidic ligand...