Recently we introduced the concept of Suspension Trapping (STrap) for bottom-up proteomics sample processing that is based upon SDS-mediated protein extraction, swift detergent removal and rapid reactor-type protein digestion in a quartz depth filter trap. As the depth filter surface is made of silica, it is readily modifiable with various functional groups using the silane coupling chemistries. Thus, during the digest, peptides possessing specific features could be targeted for enrichment by the functionalized depth filter material while non-targeted peptides could be collected as an unbound distinct fraction after the digest. In the example presented here the quartz depth filter surface is functionalized with the pyridyldithiol group ther...
We describe a proteomic reactor-based homogeneous phase enrichment of cysteine-containing peptides i...
<p>On average per sample we identified 4280 proteins with the basic approach and 4930 proteins with ...
So-called 'in-depth proteomics' and its applied separation methodology to improve the proteome cover...
<div><p>Recently we introduced the concept of Suspension Trapping (STrap) for bottom-up proteomics s...
Recently we introduced the concept of Suspension Trapping (STrap) for bottom-up proteo-mics sample p...
Recently we introduced the concept of Suspension Trapping (STrap) for bottom-up proteomics sample pr...
Despite recent developments in bottom‐up proteomics, the need still exists in a fast, uncomplicated,...
<p>During the basic C-STrap procedure <b>(A)</b>, the trapped protein particulate is digested <i>in-...
The detection of low abundance proteins in complex biological samples is still a challenge in proteo...
We describe a proteomic reactor-based homogeneous phase enrichment of cysteine-containing peptides i...
We report upon a novel procedure to specifically isolate cysteine-containing peptides from a complex...
Bottom-up proteomic strategies rely on efficient digestion of proteins into peptides for mass spectr...
The complexity of cell and tissue proteomes presents one of the most significant technical challenge...
Quantitative protein extraction and high-yield generation of peptides from biological samples are th...
Considering the tremendous complexity and the wide dynamic range of protein samples from biological ...
We describe a proteomic reactor-based homogeneous phase enrichment of cysteine-containing peptides i...
<p>On average per sample we identified 4280 proteins with the basic approach and 4930 proteins with ...
So-called 'in-depth proteomics' and its applied separation methodology to improve the proteome cover...
<div><p>Recently we introduced the concept of Suspension Trapping (STrap) for bottom-up proteomics s...
Recently we introduced the concept of Suspension Trapping (STrap) for bottom-up proteo-mics sample p...
Recently we introduced the concept of Suspension Trapping (STrap) for bottom-up proteomics sample pr...
Despite recent developments in bottom‐up proteomics, the need still exists in a fast, uncomplicated,...
<p>During the basic C-STrap procedure <b>(A)</b>, the trapped protein particulate is digested <i>in-...
The detection of low abundance proteins in complex biological samples is still a challenge in proteo...
We describe a proteomic reactor-based homogeneous phase enrichment of cysteine-containing peptides i...
We report upon a novel procedure to specifically isolate cysteine-containing peptides from a complex...
Bottom-up proteomic strategies rely on efficient digestion of proteins into peptides for mass spectr...
The complexity of cell and tissue proteomes presents one of the most significant technical challenge...
Quantitative protein extraction and high-yield generation of peptides from biological samples are th...
Considering the tremendous complexity and the wide dynamic range of protein samples from biological ...
We describe a proteomic reactor-based homogeneous phase enrichment of cysteine-containing peptides i...
<p>On average per sample we identified 4280 proteins with the basic approach and 4930 proteins with ...
So-called 'in-depth proteomics' and its applied separation methodology to improve the proteome cover...