Single-cell analysis provides fundamental information on individual cell response to different environmental cues and is a growing interest in cancer and stem cell research. However, current existing methods are still facing challenges in performing such analysis in a high-throughput manner whilst being cost-effective. Here we established the Droplet Microarray (DMA) as a miniaturized screening platform for high-throughput single-cell analysis. Using the method of limited dilution and varying cell density and seeding time, we optimized the distribution of single cells on the DMA. We established culturing conditions for single cells in individual droplets on DMA obtaining the survival of nearly 100% of single cells and doubling time of singl...
The real state of each cell in a population usually differs substantially from the average. The dete...
Abstract Droplet microfluidics has revolutionized the study of single cells. The ability to compartm...
Single-cell analysis is of critical importance in revealing population heterogeneity, identifying mi...
Single-cell analysis provides fundamental information on individual cell response to different envir...
Single-cell analysis provides fundamental information on individual cell response to different envir...
Microfluidics-based technologies for single-cell analysis are becoming increasingly important tools ...
Item does not contain fulltextMiniaturization has been the key driver for many remarkable technologi...
Droplet microfluidics is an emerging technology for analysis of single cells and biomolecules at hig...
Droplet microfluidics is an emerging technology for analysis of single cells and biomolecules at hig...
Droplet microfluidics is an emerging technology for analysis of single cells and biomolecules at hig...
The development of novel chemically developed and physically defined surfaces and environments for c...
This article reviews recent developments in droplet microfluidics enabling high-throughput single-ce...
Miniaturization has been the key driver for many remarkable technological developments in recent dec...
This article reviews recent developments in droplet microfluidics enabling high-throughput single-ce...
Miniaturization has been the key driver for many remarkable technological developments in recent dec...
The real state of each cell in a population usually differs substantially from the average. The dete...
Abstract Droplet microfluidics has revolutionized the study of single cells. The ability to compartm...
Single-cell analysis is of critical importance in revealing population heterogeneity, identifying mi...
Single-cell analysis provides fundamental information on individual cell response to different envir...
Single-cell analysis provides fundamental information on individual cell response to different envir...
Microfluidics-based technologies for single-cell analysis are becoming increasingly important tools ...
Item does not contain fulltextMiniaturization has been the key driver for many remarkable technologi...
Droplet microfluidics is an emerging technology for analysis of single cells and biomolecules at hig...
Droplet microfluidics is an emerging technology for analysis of single cells and biomolecules at hig...
Droplet microfluidics is an emerging technology for analysis of single cells and biomolecules at hig...
The development of novel chemically developed and physically defined surfaces and environments for c...
This article reviews recent developments in droplet microfluidics enabling high-throughput single-ce...
Miniaturization has been the key driver for many remarkable technological developments in recent dec...
This article reviews recent developments in droplet microfluidics enabling high-throughput single-ce...
Miniaturization has been the key driver for many remarkable technological developments in recent dec...
The real state of each cell in a population usually differs substantially from the average. The dete...
Abstract Droplet microfluidics has revolutionized the study of single cells. The ability to compartm...
Single-cell analysis is of critical importance in revealing population heterogeneity, identifying mi...