The possibility to conduct complete cell assays under a precisely controlled environment while consuming minor amounts of chemicals and precious drugs have made microfluidics an interesting candidate for quantitative single-cell studies. Here, we present an application-specific microfluidic device, cellcomb, capable of conducting high-throughput single-cell experiments. The system employs pure hydrodynamic forces for easy cell trapping and is readily fabricated in polydimethylsiloxane (PDMS) using soft lithography techniques. The cell-trapping array consists of V-shaped pockets designed to accommodate up to six Saccharomyces cerevisiae (yeast cells) with the average diameter of 4 μm. We used this platform to monitor the impact of flow rate ...
The process of developing and testing drug candidates is a slow and costly endeavor. The mainstream ...
Single cell analysis (SCA) has gained increased popularity for elucidating cellular heterogeneity at...
This article reviews recent developments in microfluidic systems enabling high-throughput characteri...
The possibility to conduct complete cell assays under a precisely controlled environment while consu...
Single cell analysis techniques provide a unique opportunity of determining the intercellular hetero...
Over the past decade, interest in microfluidics has surged as applications have trended towards nove...
Single-cell capture plays an important role in single-cell manipulation and analysis. This paper pre...
Traditionally, in vitro investigations on biology and physiology of cells rely on averaging the resp...
The isolation of single biological cells and their further cultivation in dedicated arrayed chambers...
The physiological properties of cells are typically investigated in ensembles yielding averaged data...
We present a simple technique for cell loading, culturing, and phenotypic study in a multi-chamber m...
Abstract Traditionally, in vitro investigations on biology and physiology of cells rely on averaging...
Single-cell analysis is of critical importance in revealing population heterogeneity, identifying mi...
A microfluidic platform for single-cell capture, stimulation, and imaging. It passively traps 4,000 ...
Single cell analysis (SCA) has obtained great importance among biologists for elucidating cell-to-ce...
The process of developing and testing drug candidates is a slow and costly endeavor. The mainstream ...
Single cell analysis (SCA) has gained increased popularity for elucidating cellular heterogeneity at...
This article reviews recent developments in microfluidic systems enabling high-throughput characteri...
The possibility to conduct complete cell assays under a precisely controlled environment while consu...
Single cell analysis techniques provide a unique opportunity of determining the intercellular hetero...
Over the past decade, interest in microfluidics has surged as applications have trended towards nove...
Single-cell capture plays an important role in single-cell manipulation and analysis. This paper pre...
Traditionally, in vitro investigations on biology and physiology of cells rely on averaging the resp...
The isolation of single biological cells and their further cultivation in dedicated arrayed chambers...
The physiological properties of cells are typically investigated in ensembles yielding averaged data...
We present a simple technique for cell loading, culturing, and phenotypic study in a multi-chamber m...
Abstract Traditionally, in vitro investigations on biology and physiology of cells rely on averaging...
Single-cell analysis is of critical importance in revealing population heterogeneity, identifying mi...
A microfluidic platform for single-cell capture, stimulation, and imaging. It passively traps 4,000 ...
Single cell analysis (SCA) has obtained great importance among biologists for elucidating cell-to-ce...
The process of developing and testing drug candidates is a slow and costly endeavor. The mainstream ...
Single cell analysis (SCA) has gained increased popularity for elucidating cellular heterogeneity at...
This article reviews recent developments in microfluidic systems enabling high-throughput characteri...