Due to its compatibility and orthogonality to reversed phase (RP) liquid chromatography (LC) separation, ion exchange chromatography, and mainly strong cation exchange (SCX), has often been the first choice in multidimensional LC experiments in proteomics. Here, we have tested the ability of three strong anion exchanger (SAX) columns differing in their hydrophobicity to fractionate RAW264.7 macrophage cell lysate. IonPac AS24, a strong anion exchange material with ultralow hydrophobicity, demonstrated to be superior to other materials by fractionation and separation of tryptic peptides from both a mixture of 6 proteins as well as mouse cell lysate. The chromatography displayed very high orthogonality and high robustness depending on the hyd...
The diversity and complexity of proteins and peptides in biological systems requires powerful liquid...
In proteomics, comprehensive analysis of peptides mixtures necessitates multiple dimensions of separ...
The development of a peptide retention prediction model for strong cation exchange (SCX) separation ...
Due to its compatibility and orthogonality to reversed phase (RP) liquid chromatography (LC) separat...
Due to its compatibility and orthogonality to reversed phase (RP) liquid chromatography (LC) separat...
Multidimensional peptide fractionation is widely used in proteomics to reduce the complexity of pept...
Proteome profiling of crude serum is a challenging task due to the wide dynamic range of protein con...
The usage of strong cation exchange (SCX) chromatography in proteomics is limited by its poor resolu...
In proteomics, nanoflow multidimensional chromatography is now the gold standard for the separation ...
The mixture of phosphopeptides enriched from proteome samples are very complex. To reduce the comple...
Single-chain variable fragments (scFv) are widely used in several fields. However, they can be chall...
In the last decade, the field of proteomics has rapidly progressed with substantial advances in many...
ABSTRACT: Most phosphoproteomics experiments rely on prefractionation of tryptic digests before onli...
We are currently examining the potential of amphipathic cationic α-helical peptides as a new generat...
Hydrophilic strong anion exchange chromatography (hSAX) is becoming a popular method for the prefrac...
The diversity and complexity of proteins and peptides in biological systems requires powerful liquid...
In proteomics, comprehensive analysis of peptides mixtures necessitates multiple dimensions of separ...
The development of a peptide retention prediction model for strong cation exchange (SCX) separation ...
Due to its compatibility and orthogonality to reversed phase (RP) liquid chromatography (LC) separat...
Due to its compatibility and orthogonality to reversed phase (RP) liquid chromatography (LC) separat...
Multidimensional peptide fractionation is widely used in proteomics to reduce the complexity of pept...
Proteome profiling of crude serum is a challenging task due to the wide dynamic range of protein con...
The usage of strong cation exchange (SCX) chromatography in proteomics is limited by its poor resolu...
In proteomics, nanoflow multidimensional chromatography is now the gold standard for the separation ...
The mixture of phosphopeptides enriched from proteome samples are very complex. To reduce the comple...
Single-chain variable fragments (scFv) are widely used in several fields. However, they can be chall...
In the last decade, the field of proteomics has rapidly progressed with substantial advances in many...
ABSTRACT: Most phosphoproteomics experiments rely on prefractionation of tryptic digests before onli...
We are currently examining the potential of amphipathic cationic α-helical peptides as a new generat...
Hydrophilic strong anion exchange chromatography (hSAX) is becoming a popular method for the prefrac...
The diversity and complexity of proteins and peptides in biological systems requires powerful liquid...
In proteomics, comprehensive analysis of peptides mixtures necessitates multiple dimensions of separ...
The development of a peptide retention prediction model for strong cation exchange (SCX) separation ...