Contemporary lipidomics protocols are dependent on conventional tandem mass spectrometry for lipid identification. This approach is extremely powerful for determining lipid class and identifying the number of carbons and the degree of unsaturation of any acyl-chain substituents. Such analyses are however, blind to isomeric variants arising from different carbon carbon bonding motifs within these chains including double bond position, chain branching, and cyclic structures. This limitation arises from the fact that conventional, low energy collision-induced dissociation of even-electron lipid ions does not give rise to product ions from intrachain fragmentation of the fatty acyl moieties. To overcome this limitation, we have applied radical-...
Recent expansion in research in the field of lipidomics has been driven by the development of new ma...
The ability to generate gaseous doubly charged cations of glycerophosphocholine (GPC) lipids via ele...
The inability of current mass spectrometry techniques to differentiate phospholipid isomers results ...
Contemporary lipidomics protocols are dependent on conventional tandem mass spectrometry for lipid i...
Contemporary lipidomics protocols are dependent on conventional tandem mass spectrometry for lipid i...
RATIONALE Both traditional electron ionization and electrospray ionization tandem mass spectrometry ...
We present a mass spectrometry-based method for the identification of cis and trans double-bond isom...
Double bond position and stereochemistry in unsaturated lipids can have profound impact on biologica...
Recent developments in analytical technologies have driven significant advances in lipid science. Th...
Fatty acids are a structurally diverse category of lipids with a myriad of biochemical functions, wh...
As the field of lipidomics grows and its application becomes wide and varied it is important that we...
Lipids are structurally diverse biomolecules with vital functions in biological systems. Some of the...
Ultraviolet-photodissociation (UVPD) mass spectrometry is an emerging analytical tool for structural...
Recent expansion in research in the field of lipidomics has been driven by the development of new ma...
The ability to generate gaseous doubly charged cations of glycerophosphocholine (GPC) lipids via ele...
The inability of current mass spectrometry techniques to differentiate phospholipid isomers results ...
Contemporary lipidomics protocols are dependent on conventional tandem mass spectrometry for lipid i...
Contemporary lipidomics protocols are dependent on conventional tandem mass spectrometry for lipid i...
RATIONALE Both traditional electron ionization and electrospray ionization tandem mass spectrometry ...
We present a mass spectrometry-based method for the identification of cis and trans double-bond isom...
Double bond position and stereochemistry in unsaturated lipids can have profound impact on biologica...
Recent developments in analytical technologies have driven significant advances in lipid science. Th...
Fatty acids are a structurally diverse category of lipids with a myriad of biochemical functions, wh...
As the field of lipidomics grows and its application becomes wide and varied it is important that we...
Lipids are structurally diverse biomolecules with vital functions in biological systems. Some of the...
Ultraviolet-photodissociation (UVPD) mass spectrometry is an emerging analytical tool for structural...
Recent expansion in research in the field of lipidomics has been driven by the development of new ma...
The ability to generate gaseous doubly charged cations of glycerophosphocholine (GPC) lipids via ele...
The inability of current mass spectrometry techniques to differentiate phospholipid isomers results ...