Manipulating single biological objects is a major unmet challenge of biomedicine. Herein, we describe a lab-on-a-chip platform based on dielectrophoresis (DEP). The DEParray is a prototypal version consisting of 320 × 320 arrayed electrodes generating >10 000 spherical DEP cages. It allows the capture and software-guided movement to predetermined spatial coordinates of single biological objects. With the DEParray we demonstrate (a) forced interaction between a single, preselected target cell and a programmable number of either microspheres or natural killer (NK) cells, (b) on-chip immunophenotypic discrimination of individual cells based on differential rosetting with microspheres functionalized with monoclonal antibodies to an inhibitory N...
Cytotoxic T-lymphocytes (CTL) of cancer patients exhibit the ability to lyse tumor cells and this fe...
Dielectrophoresis, the induced motion of polarisable particles in a nonuniform electric ?eld, has be...
Cell-based approaches in medicine, biotechnology, and pharmaceutical research offer unique prospects...
Manipulating single biological objects is a major unmet challenge of biomedicine. Herein, we describ...
Manipulating single biological objects is a major unmet challenge of biomedicine. Herein, we describ...
Manipulating single biological objects is a major unmet challenge of biomedicine. Herein, we describ...
The Lab-on-a-chip technology will enable laboratory testing to move from laboratories employing comp...
Guiding the interaction of single cells acting as partners in heterotypic interactions (e.g., effect...
Guiding the interaction of single cells acting as partners in heterotypic interactions (e.g., effect...
Individual cell manipulation and targeting is of major interest in the field of diagnosis, phenotypi...
In this review we present dat supporting the feasibility to perform experiments based on dielectroph...
Dielectrophoresis (DEP)-based lab-on-a-chip devices represent a very appealing approach for cell ma...
The isolation of rare cells (such as peripheral hematopoietic stem cells, fetal cells in maternal bl...
We report the fabrication of two different cell patterns based on negative dielectrophoresis (n-DEP)...
Cytotoxic T-lymphocytes (CTL) are of great importance for the control of the immune response against...
Cytotoxic T-lymphocytes (CTL) of cancer patients exhibit the ability to lyse tumor cells and this fe...
Dielectrophoresis, the induced motion of polarisable particles in a nonuniform electric ?eld, has be...
Cell-based approaches in medicine, biotechnology, and pharmaceutical research offer unique prospects...
Manipulating single biological objects is a major unmet challenge of biomedicine. Herein, we describ...
Manipulating single biological objects is a major unmet challenge of biomedicine. Herein, we describ...
Manipulating single biological objects is a major unmet challenge of biomedicine. Herein, we describ...
The Lab-on-a-chip technology will enable laboratory testing to move from laboratories employing comp...
Guiding the interaction of single cells acting as partners in heterotypic interactions (e.g., effect...
Guiding the interaction of single cells acting as partners in heterotypic interactions (e.g., effect...
Individual cell manipulation and targeting is of major interest in the field of diagnosis, phenotypi...
In this review we present dat supporting the feasibility to perform experiments based on dielectroph...
Dielectrophoresis (DEP)-based lab-on-a-chip devices represent a very appealing approach for cell ma...
The isolation of rare cells (such as peripheral hematopoietic stem cells, fetal cells in maternal bl...
We report the fabrication of two different cell patterns based on negative dielectrophoresis (n-DEP)...
Cytotoxic T-lymphocytes (CTL) are of great importance for the control of the immune response against...
Cytotoxic T-lymphocytes (CTL) of cancer patients exhibit the ability to lyse tumor cells and this fe...
Dielectrophoresis, the induced motion of polarisable particles in a nonuniform electric ?eld, has be...
Cell-based approaches in medicine, biotechnology, and pharmaceutical research offer unique prospects...