High throughput screening (HTS) is important for identifying molecules with desired properties. Mass spectrometry (MS) is potentially powerful for label-free HTS due to its high sensitivity, speed, and resolution. Segmented flow, where samples are manipulated as droplets separated by an immiscible fluid, is an intriguing format for high throughput MS because it can be used to reliably and precisely manipulate nanoliter volumes and can be directly coupled to electrospray ionization (ESI) MS for rapid analysis. In this study, we describe a “MS Plate Reader” that couples standard multiwell plate HTS workflow to droplet ESI-MS. The MS plate reader can reformat 3072 samples from eight 384-well plates into nanoliter droplets segmented by an immis...
Native mass spectrometry is widely used to study the structure, stoichiometry, stability, and intera...
High- and ultrahigh-throughput label-free sample analysis is required by many applications, extendin...
As mass spectrometry methods continue to advance, there is a growing need for innovative interfaces ...
ABSTRACT: High throughput screening (HTS) is important for identifying molecules with desired proper...
Droplet-based microfluidics is an attractive platform for screening and optimizing chemical reaction...
High-throughput screening (HTS) is an important tool for finding active compounds to initiate medici...
Directed Evolution is a key technology driving the utility of biocatalysis in pharmaceutical synthes...
Modern drug discovery relies on high-throughput screening for lead generation and protein target eva...
Droplet-based fluidics is emerging as a powerful platform for single cell analysis, directed evoluti...
Electrospray ionization mass spectrometry (ESI-MS) is an attractive analytical tool for high-through...
Fast and efficient handling of ligands and biological targets are required in bioaffinity screening ...
Microfluidic droplet sorting enables the highâ throughput screening and selection of waterâ inâ o...
Mass Spectrometry (MS) is one of the widely used tools for chemical detection down to attomole conce...
Bioaffinity mass spectrometry screening is a novel approach using non-denaturing electrospray ioniza...
High throughput experimentation (HTE) is increasingly important in both academic and industrial rese...
Native mass spectrometry is widely used to study the structure, stoichiometry, stability, and intera...
High- and ultrahigh-throughput label-free sample analysis is required by many applications, extendin...
As mass spectrometry methods continue to advance, there is a growing need for innovative interfaces ...
ABSTRACT: High throughput screening (HTS) is important for identifying molecules with desired proper...
Droplet-based microfluidics is an attractive platform for screening and optimizing chemical reaction...
High-throughput screening (HTS) is an important tool for finding active compounds to initiate medici...
Directed Evolution is a key technology driving the utility of biocatalysis in pharmaceutical synthes...
Modern drug discovery relies on high-throughput screening for lead generation and protein target eva...
Droplet-based fluidics is emerging as a powerful platform for single cell analysis, directed evoluti...
Electrospray ionization mass spectrometry (ESI-MS) is an attractive analytical tool for high-through...
Fast and efficient handling of ligands and biological targets are required in bioaffinity screening ...
Microfluidic droplet sorting enables the highâ throughput screening and selection of waterâ inâ o...
Mass Spectrometry (MS) is one of the widely used tools for chemical detection down to attomole conce...
Bioaffinity mass spectrometry screening is a novel approach using non-denaturing electrospray ioniza...
High throughput experimentation (HTE) is increasingly important in both academic and industrial rese...
Native mass spectrometry is widely used to study the structure, stoichiometry, stability, and intera...
High- and ultrahigh-throughput label-free sample analysis is required by many applications, extendin...
As mass spectrometry methods continue to advance, there is a growing need for innovative interfaces ...