Individual cell manipulation and targeting is of major interest in the field of diagnosis, phenotypic characterization and drug delivery. Lab-on-a-chip technologies open the possibility to work easily at the single cell level. We developed a dielectrophoretic microchip capable to trap and manipulate individual cells and microspheres. We targeted single cells with functionalized microspheres in a software controlled way proving the efficiency and reliability of our chip. As an example, we demonstrate guided targeting and binding of cell lines expressing or not specific antigens with microspheres coated or not with the corresponding monoclonal antibodies
We present an integrated circuit/microfluidic chip that traps and moves individual living biological...
In this review we present dat supporting the feasibility to perform experiments based on dielectroph...
Single-cell measurement has been achieved using a microfluidic dielectrophoresis (DEP) chip designed...
Individual cell manipulation and targeting is of major interest in the field of diagnosis, phenotypi...
The Lab-on-a-chip technology will enable laboratory testing to move from laboratories employing comp...
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...
Dielectrophoresis (DEP)-based lab-on-a-chip devices represent a very appealing approach for cell ma...
none14noneBorgatti M; Altomare L; Abonnec M; Fabbri E; Manaresi N; Medoro G; Romani A; Tartagni M; N...
Manipulating single biological objects is a major unmet challenge of biomedicine. Herein, we describ...
Cell-based approaches in medicine, biotechnology, and pharmaceutical research offer unique prospects...
A silicon based chip device with a regular array of more than 100 000 cylindrical sub-microelectrode...
Cytotoxic T-lymphocytes (CTL) of cancer patients exhibit the ability to lyse tumor cells and this fe...
The isolation of rare cells (such as peripheral hematopoietic stem cells, fetal cells in maternal bl...
Parallel cell biochips: cell placement using dielectrophoresis or microfluidic effects. After a brie...
We present an integrated circuit/microfluidic chip that traps and moves individual living biological...
In this review we present dat supporting the feasibility to perform experiments based on dielectroph...
Single-cell measurement has been achieved using a microfluidic dielectrophoresis (DEP) chip designed...
Individual cell manipulation and targeting is of major interest in the field of diagnosis, phenotypi...
The Lab-on-a-chip technology will enable laboratory testing to move from laboratories employing comp...
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...
Dielectrophoresis (DEP)-based lab-on-a-chip devices represent a very appealing approach for cell ma...
none14noneBorgatti M; Altomare L; Abonnec M; Fabbri E; Manaresi N; Medoro G; Romani A; Tartagni M; N...
Manipulating single biological objects is a major unmet challenge of biomedicine. Herein, we describ...
Cell-based approaches in medicine, biotechnology, and pharmaceutical research offer unique prospects...
A silicon based chip device with a regular array of more than 100 000 cylindrical sub-microelectrode...
Cytotoxic T-lymphocytes (CTL) of cancer patients exhibit the ability to lyse tumor cells and this fe...
The isolation of rare cells (such as peripheral hematopoietic stem cells, fetal cells in maternal bl...
Parallel cell biochips: cell placement using dielectrophoresis or microfluidic effects. After a brie...
We present an integrated circuit/microfluidic chip that traps and moves individual living biological...
In this review we present dat supporting the feasibility to perform experiments based on dielectroph...
Single-cell measurement has been achieved using a microfluidic dielectrophoresis (DEP) chip designed...