Immunotherapy is currently being investigated for the treatment of many diseases, including cancer. The ability to control the location of immune cells during or following activation would represent a powerful new technique for this field. Targeted magnetic delivery is emerging as a technique for controlling cell movement and localization. Here we show that this technique can be extended to microglia, the primary phagocytic immune cells in the central nervous system. The magnetized microglia were generated by loading the cells with iron oxide nanoparticles functionalized with CpG oligonucleotides, serving as a proof of principle that nanoparticles can be used to both deliver an immunostimulatory cargo to cells and to control the movement of...
The success of cell therapy approaches is greatly dependent on the ability to precisely deliver and ...
The use of magnetism in medicine has changed dramatically since its first application by the ancient...
Iron–dextran nanoparticles functionalized with T cell activating proteins have been used to study T ...
Immunotherapy is currently being investigated for the treatment of many diseases, including cancer. ...
T lymphocytes are highly dynamic elements of the immune system with a tightly regulated migration. ...
BACKGROUND: The ability to direct and manipulate neuronal cells has important potential in therapeut...
Progress in nanotechnology has determined new strategies concerning drug delivery into the central n...
Regulation of cell behavior and function is crucial to understand biological phenomena and overcome ...
Progress in nanotechnology has determined new strategies concerning drug delivery into the central n...
International audienceThis tutorial describes a method of controlled cell labeling with citrate-coat...
Neural stem cells (NSCs) have a high therapeutic potential for patients with neurological disease/in...
International audienceInspired by microvesicle-mediated intercellular communication, we propose a hy...
The success of cell therapy approaches is greatly dependent on the ability to precisely deliver and ...
Purpose: Immune activation with T cell tumor infiltration is beneficial for the prognosis of patient...
Abstract Cancer immunotherapy has shown promising therapeutic results in the clinic, albeit only in ...
The success of cell therapy approaches is greatly dependent on the ability to precisely deliver and ...
The use of magnetism in medicine has changed dramatically since its first application by the ancient...
Iron–dextran nanoparticles functionalized with T cell activating proteins have been used to study T ...
Immunotherapy is currently being investigated for the treatment of many diseases, including cancer. ...
T lymphocytes are highly dynamic elements of the immune system with a tightly regulated migration. ...
BACKGROUND: The ability to direct and manipulate neuronal cells has important potential in therapeut...
Progress in nanotechnology has determined new strategies concerning drug delivery into the central n...
Regulation of cell behavior and function is crucial to understand biological phenomena and overcome ...
Progress in nanotechnology has determined new strategies concerning drug delivery into the central n...
International audienceThis tutorial describes a method of controlled cell labeling with citrate-coat...
Neural stem cells (NSCs) have a high therapeutic potential for patients with neurological disease/in...
International audienceInspired by microvesicle-mediated intercellular communication, we propose a hy...
The success of cell therapy approaches is greatly dependent on the ability to precisely deliver and ...
Purpose: Immune activation with T cell tumor infiltration is beneficial for the prognosis of patient...
Abstract Cancer immunotherapy has shown promising therapeutic results in the clinic, albeit only in ...
The success of cell therapy approaches is greatly dependent on the ability to precisely deliver and ...
The use of magnetism in medicine has changed dramatically since its first application by the ancient...
Iron–dextran nanoparticles functionalized with T cell activating proteins have been used to study T ...