International audienceMicroorganisms are widely used to generate valuable products, and their efficiency is a major industrial focus. Bioreactors are typically composed of billions of cells, and available measurements only reflect the overall performance of the population. However, cells do not equally contribute, and process optimization would therefore benefit from monitoring this intrapopulation diversity. Such monitoring has so far remained difficult because of the inability to probe concentration changes at the single-cell level. Here, we unlock this limitation by taking advantage of the osmotically driven water flux between a droplet containing a living cell toward surrounding empty droplets, within a concentrated inverse emulsion. Wi...
The real state of each cell in a population usually differs substantially from the average. The dete...
The ability of cells to maintain pH homeostasis in response to environmental changes has elicited in...
Phenotyping single cells based on the products they secrete or consume is a key bottleneck in many b...
Microorganisms adapt their biophysical properties in response to changes in their local environment....
Water-in-oil-in-water (w/o/w) or double-emulsion (DE) droplets have been widely used for cellular as...
We present a method for direct non-optical quantification of dry mass, dry density and water mass of...
<div><p>We present a method for direct non-optical quantification of dry mass, dry density and water...
© COPYRIGHT SPIE. Downloading of the abstract is permitted for personal use only. Several biotechnol...
Dusny C, Grünberger A. Microfluidic single-cell analysis in biotechnology: from monitoring towards u...
Living cells harvest energy from their environments to drive the chemical processes that enable life...
Droplet-based microfluidics offers tremendous capabilities for high-throughput-screening systems, but...
We have used a microfluidic mass sensor to measure the density of single living cells. By weighing e...
Cell factories are cells that have been engineered to produce a compound of interest, ranging from b...
Metabolic heterogeneity between individual cells of a population harbors significant challenges for ...
Changes of metabolite concentrations in single cells are significant for exploring the dynamic regul...
The real state of each cell in a population usually differs substantially from the average. The dete...
The ability of cells to maintain pH homeostasis in response to environmental changes has elicited in...
Phenotyping single cells based on the products they secrete or consume is a key bottleneck in many b...
Microorganisms adapt their biophysical properties in response to changes in their local environment....
Water-in-oil-in-water (w/o/w) or double-emulsion (DE) droplets have been widely used for cellular as...
We present a method for direct non-optical quantification of dry mass, dry density and water mass of...
<div><p>We present a method for direct non-optical quantification of dry mass, dry density and water...
© COPYRIGHT SPIE. Downloading of the abstract is permitted for personal use only. Several biotechnol...
Dusny C, Grünberger A. Microfluidic single-cell analysis in biotechnology: from monitoring towards u...
Living cells harvest energy from their environments to drive the chemical processes that enable life...
Droplet-based microfluidics offers tremendous capabilities for high-throughput-screening systems, but...
We have used a microfluidic mass sensor to measure the density of single living cells. By weighing e...
Cell factories are cells that have been engineered to produce a compound of interest, ranging from b...
Metabolic heterogeneity between individual cells of a population harbors significant challenges for ...
Changes of metabolite concentrations in single cells are significant for exploring the dynamic regul...
The real state of each cell in a population usually differs substantially from the average. The dete...
The ability of cells to maintain pH homeostasis in response to environmental changes has elicited in...
Phenotyping single cells based on the products they secrete or consume is a key bottleneck in many b...