Mass spectrometry-based metabolomics approaches can enable detection and quantification of many thousands of metabolite features simultaneously. However, compound identification and reliable quantification are greatly complicated owing to the chemical complexity and dynamic range of the metabolome. Simultaneous quantification of many metabolites within complex mixtures can additionally be complicated by ion suppression, fragmentation and the presence of isomers. Here we present guidelines covering sample preparation, replication and randomization, quantification, recovery and recombination, ion suppression and peak misidentification, as a means to enable high-quality reporting of liquid chromatography- and gas chromatography-mass spectromet...
Metabolite profiling is a recent addition to the suite of high-throughput phenotyping technologies. ...
The annotation of small molecules remains a major challenge in untargeted mass spectrometry-based me...
High resolution mass spectrometry (HRMS) is increasingly used to produce metabolomics data. Thanks t...
Mass spectrometry-based metabolomics approaches can enable detection and quantification of many thou...
Mass spectrometry-based metabolomics approaches can enable detection and quantification of many thou...
Mass spectrometry-based metabolomics approaches can enable detection and quantification of many thou...
Metabolite identification remains a bottleneck in mass spectrometry (MS)-based metabolomics. Current...
Epub ahead of printNowadays, high-resolution mass spectrometry is widely used for metabolomic studie...
The chemical identification of mass spectrometric signals in metabolomic applications is important t...
Gas chromatography-mass spectrometry (GC-MS)-based metabolomics is ideal for identifying and quantit...
Metabolomics is an emerging omics study that aims to characterize the entire metabolome in a biologi...
Nowadays, high-resolution mass spectrometry is widely used for metabolomic studies. Thanks to its hi...
Modern analytical technologies afford comprehensive and quantitative investigation of a multitude of...
Reliable analyte identification is critical in metabolomics experiments to ensure proper interpretat...
Metabolite profiling is a recent addition to the suite of high-throughput phenotyping technologies. ...
The annotation of small molecules remains a major challenge in untargeted mass spectrometry-based me...
High resolution mass spectrometry (HRMS) is increasingly used to produce metabolomics data. Thanks t...
Mass spectrometry-based metabolomics approaches can enable detection and quantification of many thou...
Mass spectrometry-based metabolomics approaches can enable detection and quantification of many thou...
Mass spectrometry-based metabolomics approaches can enable detection and quantification of many thou...
Metabolite identification remains a bottleneck in mass spectrometry (MS)-based metabolomics. Current...
Epub ahead of printNowadays, high-resolution mass spectrometry is widely used for metabolomic studie...
The chemical identification of mass spectrometric signals in metabolomic applications is important t...
Gas chromatography-mass spectrometry (GC-MS)-based metabolomics is ideal for identifying and quantit...
Metabolomics is an emerging omics study that aims to characterize the entire metabolome in a biologi...
Nowadays, high-resolution mass spectrometry is widely used for metabolomic studies. Thanks to its hi...
Modern analytical technologies afford comprehensive and quantitative investigation of a multitude of...
Reliable analyte identification is critical in metabolomics experiments to ensure proper interpretat...
Metabolite profiling is a recent addition to the suite of high-throughput phenotyping technologies. ...
The annotation of small molecules remains a major challenge in untargeted mass spectrometry-based me...
High resolution mass spectrometry (HRMS) is increasingly used to produce metabolomics data. Thanks t...