A high-throughput approach and platform using 15 minute reversed-phase capillary liquid chromatography (RPLC) separations in conjunction with ion mobility spectrometry-mass spectrometry (IMS-MS) measurements was evaluated for the rapid analysis of complex proteomics samples. To test the separation quality of the short LC gradient, a sample was prepared by spiking twenty reference peptides at varying concentrations from 1 ng/mL to 10 µg/mL into a tryptic digest of mouse blood plasma and analyzed with both a LC-Linear Ion Trap Fourier Transform (FT) MS and LC-IMS-TOF MS. The LC-FT MS detected thirteen out of the twenty spiked peptides that had concentrations ≥100 ng/mL. In contrast, the drift time selected mass spectra from the LC-IMS-TOF MS ...
We present a new proteomics analysis pipeline focused on maximizing the dynamic range of detected mo...
In recent years, the concept of cell heterogeneity in biology has gained increasing attention, conco...
Mass spectrometry (MS) is currently the most sensitive and selective analytical technique for routin...
Ion Mobility Spectrometry–Time-of-Flight Mass Spectrometry (IMS-TOFMS) has been increasingly used in...
The deployment of proteomic analysis in clinical studies represents a significant opportunity to det...
Separations coupled to mass spectrometry (MS) are widely used for large-scale protein identification...
As novel liquid chromatography–mass spectrometry (LC-MS) technologies for proteomics offer a substan...
Mass spectrometry (MS) is currently the most sensitive and selective analytical technique for routin...
Mass spectrometry (MS) is currently the most sensitive and selective analytical technique for routin...
LC-MS/MS has emerged as the method of choice for the identification and quantification of protein sa...
AbstractWe describe a fully automated high performance liquid chromatography 9.4 tesla Fourier trans...
Multiplex protein quantification, proteomics, is essential for uncovering new biomarkers and underst...
Studies of protein and peptide expression are vital in order to understand complex biological system...
We present a new proteomics analysis pipeline focused on maximizing the dynamic range of detected mo...
© 2016 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim The application of unit resolution tandem quadrupo...
We present a new proteomics analysis pipeline focused on maximizing the dynamic range of detected mo...
In recent years, the concept of cell heterogeneity in biology has gained increasing attention, conco...
Mass spectrometry (MS) is currently the most sensitive and selective analytical technique for routin...
Ion Mobility Spectrometry–Time-of-Flight Mass Spectrometry (IMS-TOFMS) has been increasingly used in...
The deployment of proteomic analysis in clinical studies represents a significant opportunity to det...
Separations coupled to mass spectrometry (MS) are widely used for large-scale protein identification...
As novel liquid chromatography–mass spectrometry (LC-MS) technologies for proteomics offer a substan...
Mass spectrometry (MS) is currently the most sensitive and selective analytical technique for routin...
Mass spectrometry (MS) is currently the most sensitive and selective analytical technique for routin...
LC-MS/MS has emerged as the method of choice for the identification and quantification of protein sa...
AbstractWe describe a fully automated high performance liquid chromatography 9.4 tesla Fourier trans...
Multiplex protein quantification, proteomics, is essential for uncovering new biomarkers and underst...
Studies of protein and peptide expression are vital in order to understand complex biological system...
We present a new proteomics analysis pipeline focused on maximizing the dynamic range of detected mo...
© 2016 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim The application of unit resolution tandem quadrupo...
We present a new proteomics analysis pipeline focused on maximizing the dynamic range of detected mo...
In recent years, the concept of cell heterogeneity in biology has gained increasing attention, conco...
Mass spectrometry (MS) is currently the most sensitive and selective analytical technique for routin...