In this study we present a novel microfluidic hydrodynamic trapping device to probe the cell-cell interaction between all cell samples of two distinct populations. We have exploited an hydrodynamic trapping method using microfluidics to immobilize a batch of cells from the first population at specific locations, then relied on hydrodynamic filtering principles, the flowing cells from the second cell population are placed in contact with the trapped ones, through a roll-over mechanism. The rolling cells interact with the serially trapped cells one after the other. The proposed microfluidic phenomenon was characterized with beads. We have shown the validity of our method by detecting the capacity of olfactory receptors to induce adhesion of c...
Abstract Traditionally, in vitro investigations on biology and physiology of cells rely on averaging...
<div><p>Single cell techniques permit the analysis of cellular properties that are obscured by study...
[[abstract]]Studies on cellular heterogeneity have emerged as a powerful approach for developing new...
In this study we present a novel microfluidic hydrodynamic trapping device to probe the cell–cell in...
In this study we present a novel microfluidic hydrodynamic trapping device to probe the cell-cell in...
Microfluidics and microtechnologies are of great interest for biological applications. This interest...
Traditionally, in vitro investigations on biology and physiology of cells rely on averaging the resp...
International audienceAnalyzing cell–cell interaction is essential to investigate how immune cells f...
The physiological properties of cells are typically investigated in ensembles yielding averaged data...
Intercellular interaction between cell–cell and cell–ECM is critical to numerous biology and medical...
We have developed a microfluidic platform to immobilize single living cells at a position in a micro...
Single cell analysis techniques provide a unique opportunity of determining the intercellular hetero...
Cells naturally exist in a dynamic chemical environment, and therefore it is necessary to study cell...
The possibility to conduct complete cell assays under a precisely controlled environment while consu...
The possibility to conduct complete cell assays under a precisely controlled environment while consu...
Abstract Traditionally, in vitro investigations on biology and physiology of cells rely on averaging...
<div><p>Single cell techniques permit the analysis of cellular properties that are obscured by study...
[[abstract]]Studies on cellular heterogeneity have emerged as a powerful approach for developing new...
In this study we present a novel microfluidic hydrodynamic trapping device to probe the cell–cell in...
In this study we present a novel microfluidic hydrodynamic trapping device to probe the cell-cell in...
Microfluidics and microtechnologies are of great interest for biological applications. This interest...
Traditionally, in vitro investigations on biology and physiology of cells rely on averaging the resp...
International audienceAnalyzing cell–cell interaction is essential to investigate how immune cells f...
The physiological properties of cells are typically investigated in ensembles yielding averaged data...
Intercellular interaction between cell–cell and cell–ECM is critical to numerous biology and medical...
We have developed a microfluidic platform to immobilize single living cells at a position in a micro...
Single cell analysis techniques provide a unique opportunity of determining the intercellular hetero...
Cells naturally exist in a dynamic chemical environment, and therefore it is necessary to study cell...
The possibility to conduct complete cell assays under a precisely controlled environment while consu...
The possibility to conduct complete cell assays under a precisely controlled environment while consu...
Abstract Traditionally, in vitro investigations on biology and physiology of cells rely on averaging...
<div><p>Single cell techniques permit the analysis of cellular properties that are obscured by study...
[[abstract]]Studies on cellular heterogeneity have emerged as a powerful approach for developing new...