Lab-on-a-chip systems offer a versatile environment in which low numbers of cells and molecules can be manipulated, captured, detected and analysed. We describe here a micro-fluidic device that allows the isolation, electroporation and lysis of single cells. A431 human epithelial carcinoma cells, expressing a green fluorescent protein-labelled actin, were trapped by dielectrophoresis within an integrated lab-on-a-chip device containing saw-tooth micro-electrodes. Using these same trapping electrodes, on-chip electroporation was performed, resulting in cell lysis. Protein release was monitored by confocal fluorescence microscop
The 'Lab-on-a-chip technology' involves miniaturization of complex analytical procedures and is expe...
In recent years, several publications on microfluidic devices have focused on the process of electro...
Studying biological phenomena of individual cells is enabled by matching the scales of microbes and ...
Introduction: The application of microchip techniques has really entered life science and has starte...
The emergence of microfluidic techniques provide an unprecedented opportunity for peering into molec...
In this thesis the results of the development of microfluidic cell trap devices for single cell elec...
We demonstrate a micro-electroporation device for cell lysis prior to subcellular analysis. Simple c...
Electroporation is a powerful technique to increase the permeability of cell membranes and subsequen...
Typical analytical methods for evaluating the protein and gene expression of cells rely on the molec...
Over the past few decades both micro/ nanofabrication and microfluidics technologies have been cruci...
Background: The analysis of single cells obtained from needle aspirates of tumors is constrained by ...
Dielectrophoresis (DEP)-based lab-on-a-chip devices represent a very appealing approach for cell ma...
Many scientific domains focus on the gathering of fundamental knowledge in physiological, biochemica...
We discuss the ability to perform fluorescent immunocytochemistry, following cell fixation, using a ...
The detection of intracellular proteins in vitro is commonly realized with immunofluorescence techni...
The 'Lab-on-a-chip technology' involves miniaturization of complex analytical procedures and is expe...
In recent years, several publications on microfluidic devices have focused on the process of electro...
Studying biological phenomena of individual cells is enabled by matching the scales of microbes and ...
Introduction: The application of microchip techniques has really entered life science and has starte...
The emergence of microfluidic techniques provide an unprecedented opportunity for peering into molec...
In this thesis the results of the development of microfluidic cell trap devices for single cell elec...
We demonstrate a micro-electroporation device for cell lysis prior to subcellular analysis. Simple c...
Electroporation is a powerful technique to increase the permeability of cell membranes and subsequen...
Typical analytical methods for evaluating the protein and gene expression of cells rely on the molec...
Over the past few decades both micro/ nanofabrication and microfluidics technologies have been cruci...
Background: The analysis of single cells obtained from needle aspirates of tumors is constrained by ...
Dielectrophoresis (DEP)-based lab-on-a-chip devices represent a very appealing approach for cell ma...
Many scientific domains focus on the gathering of fundamental knowledge in physiological, biochemica...
We discuss the ability to perform fluorescent immunocytochemistry, following cell fixation, using a ...
The detection of intracellular proteins in vitro is commonly realized with immunofluorescence techni...
The 'Lab-on-a-chip technology' involves miniaturization of complex analytical procedures and is expe...
In recent years, several publications on microfluidic devices have focused on the process of electro...
Studying biological phenomena of individual cells is enabled by matching the scales of microbes and ...