Single-cell analysis has important implications for understanding the specificity of cells. To analyze the specificity of rare cells in complex blood and biopsy samples, selective lysis of target single cells is pivotal but difficult. Microfluidics, particularly droplet microfluidics, has emerged as a promising tool for single-cell analysis. In this paper, we present a smart droplet microfluidic system that allows for single-cell selective lysis and real-time sorting, aided by the techniques of microinjection and image recognition. A custom program evolved from Python is proposed for recognizing target droplets and single cells, which also coordinates the operation of various parts in a whole microfluidic system. We have systematically inve...
Phenotypic diversity is a common feature shared between all cell populations, ranging from microbial...
Multicellular organisms, from roundworms to humans, are composed of interacting individual cells tha...
Conventional DNA profiling work involved using a large amount of white blood cells obtained from the...
Single-cell analysis has important implications for understanding the specificity of cells. To analy...
Droplet microfluidics is an emerging technology for analysis of single cells and biomolecules at hig...
he advance of robotic liquid handling platforms and ever more efficient experimental procedures allo...
Item does not contain fulltextMiniaturization has been the key driver for many remarkable technologi...
The ability to sort and dispense droplets accurately is essential to droplet-based single-cell analy...
Single-cell analysis techniques have emerged to overcome the limitation of bulk analysis in which th...
This article reviews recent developments in droplet microfluidics enabling high-throughput single-ce...
This is the author accepted manuscript. The final version is available from Royal Society of Chemist...
Uncovering the heterogeneity of cellular populations and multicellular constructs is a long-standing...
Miniaturization has been the key driver for many remarkable technological developments in recent dec...
Phenotypic diversity is a common feature shared between all cell populations, ranging from microbial...
Multicellular organisms, from roundworms to humans, are composed of interacting individual cells tha...
Conventional DNA profiling work involved using a large amount of white blood cells obtained from the...
Single-cell analysis has important implications for understanding the specificity of cells. To analy...
Droplet microfluidics is an emerging technology for analysis of single cells and biomolecules at hig...
he advance of robotic liquid handling platforms and ever more efficient experimental procedures allo...
Item does not contain fulltextMiniaturization has been the key driver for many remarkable technologi...
The ability to sort and dispense droplets accurately is essential to droplet-based single-cell analy...
Single-cell analysis techniques have emerged to overcome the limitation of bulk analysis in which th...
This article reviews recent developments in droplet microfluidics enabling high-throughput single-ce...
This is the author accepted manuscript. The final version is available from Royal Society of Chemist...
Uncovering the heterogeneity of cellular populations and multicellular constructs is a long-standing...
Miniaturization has been the key driver for many remarkable technological developments in recent dec...
Phenotypic diversity is a common feature shared between all cell populations, ranging from microbial...
Multicellular organisms, from roundworms to humans, are composed of interacting individual cells tha...
Conventional DNA profiling work involved using a large amount of white blood cells obtained from the...