The xCELLigence technology is a real-time cellular biosensor, which measures the net adhesion of cells to high-density gold electrode arrays printed on custom-designed E-plates. The strength of cellular adhesion is influenced by a myriad of factors that include cell type, cell viability, growth, migration, spreading and proliferation. We therefore hypothesised that xCELLigence biosensor technology would provide a valuable platform for the measurement of drug responses in a multitude of different experimental, clinical or pharmacological contexts. In this manuscript, we demonstrate how xCELLigence technology has been invaluable in the identification of (1) not only if cells respond to a particular drug, but (2) the window of drug responsiven...
AbstractA newly developed electronic cell sensor array – the xCELLigence real-time cell analysis (RT...
is used for label-free and real-time monitoring of cell pro-liferation, cytotoxicity, and migration....
In this study, we report the use of a real-time cell analysis (RTCA) test system, the xCELLigence® R...
The xCELLigence technology is a real-time cellular biosensor, which measures the net adhesion of cel...
Objective: We summarized the progress of the xCELLigence real-time cell analysis (RTCA) technology a...
Investigation of the mechanisms behind the regulation of cellular motility and adhesion is key to un...
The recently developed iCELLigence (TM) real-time cell analyzer (RTCA) can be used for the label-fre...
Investigation of the mechanisms behind the regulation of cellular motility and adhesion is key to un...
<p>(A) Working principle of xCELLigence impedance technology applied to immunotherapy monitoring. Th...
<div><h3>Background</h3><p>Cell viability and motility comprise ubiquitous mechanisms involved in a ...
The use of label-free technologies based on electrical impedance is becoming more and more popular i...
<p>Interdigitated gold microelectrodes on the well bottom (viability – E-plate) or on the bottom sid...
Cells are very intelligent and smart transducers because they transmit various molecular signals in ...
Background: Cell viability and motility comprise ubiquitous mechanisms involved in a variety of (pat...
Background: Cell viability and motility comprise ubiquitous mechanisms involved in a variety of (pat...
AbstractA newly developed electronic cell sensor array – the xCELLigence real-time cell analysis (RT...
is used for label-free and real-time monitoring of cell pro-liferation, cytotoxicity, and migration....
In this study, we report the use of a real-time cell analysis (RTCA) test system, the xCELLigence® R...
The xCELLigence technology is a real-time cellular biosensor, which measures the net adhesion of cel...
Objective: We summarized the progress of the xCELLigence real-time cell analysis (RTCA) technology a...
Investigation of the mechanisms behind the regulation of cellular motility and adhesion is key to un...
The recently developed iCELLigence (TM) real-time cell analyzer (RTCA) can be used for the label-fre...
Investigation of the mechanisms behind the regulation of cellular motility and adhesion is key to un...
<p>(A) Working principle of xCELLigence impedance technology applied to immunotherapy monitoring. Th...
<div><h3>Background</h3><p>Cell viability and motility comprise ubiquitous mechanisms involved in a ...
The use of label-free technologies based on electrical impedance is becoming more and more popular i...
<p>Interdigitated gold microelectrodes on the well bottom (viability – E-plate) or on the bottom sid...
Cells are very intelligent and smart transducers because they transmit various molecular signals in ...
Background: Cell viability and motility comprise ubiquitous mechanisms involved in a variety of (pat...
Background: Cell viability and motility comprise ubiquitous mechanisms involved in a variety of (pat...
AbstractA newly developed electronic cell sensor array – the xCELLigence real-time cell analysis (RT...
is used for label-free and real-time monitoring of cell pro-liferation, cytotoxicity, and migration....
In this study, we report the use of a real-time cell analysis (RTCA) test system, the xCELLigence® R...