Phenotypic screening through high-content automated microscopy is a powerful tool for evaluating the mechanism of action of candidate therapeutics. Despite more than a decade of development, however, high content assays have yielded mixed results, identifying robust phenotypes in only a small subset of compound classes. This has led to a combinatorial explosion of assay techniques, analyzing cellular phenotypes across dozens of assays with hundreds of measurements. Here, using a minimalist three-stain assay and only 23 basic cellular measurements, we developed an analytical approach that leverages informative dimensions extracted by linear discriminant analysis to evaluate similarity between the phenotypic trajectories of different compound...
We have implemented an unbiased cell morphology-based screen to identify small-molecule modulators o...
SummaryWe describe a cell-based kinetic profiling approach using impedance readout for monitoring th...
AbstractWe present a method for testing many biological mechanisms in cellular assays using an annot...
Quantitative microscopy has proven a versatile and powerful phenotypic screening technique. Recently...
Quantitative microscopy has proven a versatile and powerful phenotypic screening technique. Recently...
International audiencePhenotypic cell-based assays have proven to be efficient at discovering first-...
Biologically active small molecules have a central role in drug development, and as chemical probes ...
High-content screening is transforming drug discovery by enabling simultaneous measurement of multip...
Predicting the cellular response of compounds is a challenge central to the discovery of new drugs. ...
Predicting the cellular response of compounds is a challenge central to the discovery of new drugs. ...
Drug discovery is no longer relying on the one gene-one disease paradigm nor on target-based screeni...
High-content screening is increasingly used to elucidate changes in cellular biology arising from tr...
High-content microscopy offers a scalable approach to screen against multiple targets in a single pa...
High content image-based screening assays utilise cell based models to extract and quantify morpholo...
<div><p>(A) Steps in the drug-screening process. Five human cell types, including one primary and fo...
We have implemented an unbiased cell morphology-based screen to identify small-molecule modulators o...
SummaryWe describe a cell-based kinetic profiling approach using impedance readout for monitoring th...
AbstractWe present a method for testing many biological mechanisms in cellular assays using an annot...
Quantitative microscopy has proven a versatile and powerful phenotypic screening technique. Recently...
Quantitative microscopy has proven a versatile and powerful phenotypic screening technique. Recently...
International audiencePhenotypic cell-based assays have proven to be efficient at discovering first-...
Biologically active small molecules have a central role in drug development, and as chemical probes ...
High-content screening is transforming drug discovery by enabling simultaneous measurement of multip...
Predicting the cellular response of compounds is a challenge central to the discovery of new drugs. ...
Predicting the cellular response of compounds is a challenge central to the discovery of new drugs. ...
Drug discovery is no longer relying on the one gene-one disease paradigm nor on target-based screeni...
High-content screening is increasingly used to elucidate changes in cellular biology arising from tr...
High-content microscopy offers a scalable approach to screen against multiple targets in a single pa...
High content image-based screening assays utilise cell based models to extract and quantify morpholo...
<div><p>(A) Steps in the drug-screening process. Five human cell types, including one primary and fo...
We have implemented an unbiased cell morphology-based screen to identify small-molecule modulators o...
SummaryWe describe a cell-based kinetic profiling approach using impedance readout for monitoring th...
AbstractWe present a method for testing many biological mechanisms in cellular assays using an annot...