We show that by combining deterministic lateral displacement (DLD) with electrokinetics, it is possible to sort cells based on differences in their membrane and/or internal structures. Using heat to deactivate cells, which change their viability and structure, we then demonstrate sorting of a mixture of viable and non-viable cells for two different cell types. For Escherichia coli, the size change due to deactivation is insufficient to allow size-based DLD separation. Our method instead leverages the considerable change in zeta potential to achieve separation at low frequency. Conversely, for Saccharomyces cerevisiae (Baker’s yeast) the heat treatment does not result in any significant change of zeta potential. Instead, we perform the sorti...
This article presents the numerical and experimental analysis of a dielectrophoretic-activated cell ...
In this paper we describe a micro-fabricated cell separation and positioning system based on the AC ...
We present a deterministic-lateral-displacement (DLD) device that extends the capabilities of this t...
We show that by combining deterministic lateral displacement (DLD) with electrokinetics, it is possi...
To evaluate the effect of antibiotic drugs, it is important that the cells that are killed can be so...
We present a microfluidic device that can sort nanosized extracellular vesicles (EVs) based on elect...
The inherent properties of cells and micro-organisms is an under-explored source of specificity for ...
INTRODUCTION: In this paper we describe a micro-fabricated cell separation and positioning system ba...
Deterministic Lateral Displacement (DLD) is a method capable of sorting cells based on size where me...
Deterministic Lateral Displacement (DLD) is a label-free particle sorting method that separates by s...
Deterministic Lateral Displacement (DLD) is a label-free particle sorting method that separates by s...
In the fields of medicine and biology, the separation of particles is a central step in many prepara...
International audienceThis paper demonstrates the superior capabilities of Ultra-High Frequency diel...
This manuscript presents a new optically-induced dielectrophoretic (ODEP)-based operation methodolog...
Microfluidics will lead to a revolution in the field of sample analysis and to the development of La...
This article presents the numerical and experimental analysis of a dielectrophoretic-activated cell ...
In this paper we describe a micro-fabricated cell separation and positioning system based on the AC ...
We present a deterministic-lateral-displacement (DLD) device that extends the capabilities of this t...
We show that by combining deterministic lateral displacement (DLD) with electrokinetics, it is possi...
To evaluate the effect of antibiotic drugs, it is important that the cells that are killed can be so...
We present a microfluidic device that can sort nanosized extracellular vesicles (EVs) based on elect...
The inherent properties of cells and micro-organisms is an under-explored source of specificity for ...
INTRODUCTION: In this paper we describe a micro-fabricated cell separation and positioning system ba...
Deterministic Lateral Displacement (DLD) is a method capable of sorting cells based on size where me...
Deterministic Lateral Displacement (DLD) is a label-free particle sorting method that separates by s...
Deterministic Lateral Displacement (DLD) is a label-free particle sorting method that separates by s...
In the fields of medicine and biology, the separation of particles is a central step in many prepara...
International audienceThis paper demonstrates the superior capabilities of Ultra-High Frequency diel...
This manuscript presents a new optically-induced dielectrophoretic (ODEP)-based operation methodolog...
Microfluidics will lead to a revolution in the field of sample analysis and to the development of La...
This article presents the numerical and experimental analysis of a dielectrophoretic-activated cell ...
In this paper we describe a micro-fabricated cell separation and positioning system based on the AC ...
We present a deterministic-lateral-displacement (DLD) device that extends the capabilities of this t...