Over 1500 different lipids have been reported in human plasma at the sum composition level. Yet the number of unique lipids present is surely higher, once isomeric contributions from double bond location(s) and fatty acyl regiochemistry are considered. In order to resolve this ambiguity, herein, we describe the incorporation of ozone-induced dissociation (OzID) into data-independent shotgun lipidomics workflows on a high-resolution hybrid quadrupole-Orbitrap platform. In this configuration, [M + Na]+ ions generated by electrospray ionization of a plasma lipid extract were transmitted through the quadrupole in 1 Da segments. Reaction of mass-selected lipid ions with ozone in the octopole collision cell yielded diagnostic ions for each double...
The position(s) of carbon-carbon double bonds within lipids can dramatically affect their structure ...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
Over 1500 different lipids have been reported in human plasma at the sum composition level. Yet the ...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
Published online: 04 July 2023Fatty acid isomers are responsible for an under-reported lipidome dive...
Recent developments in analytical technologies have driven significant advances in lipid science. Th...
Recent developments in analytical technologies have driven significant advances in lipid science. Th...
Ions formed from lipids during electrospray ionization of crude lipid extracts have been mass-select...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
The position(s) of carbon-carbon double bonds within lipids can dramatically affect their structure ...
The position(s) of carbon-carbon double bonds within lipids can dramatically affect their structure ...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
The position(s) of carbon-carbon double bonds within lipids can dramatically affect their structure ...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
Over 1500 different lipids have been reported in human plasma at the sum composition level. Yet the ...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
Published online: 04 July 2023Fatty acid isomers are responsible for an under-reported lipidome dive...
Recent developments in analytical technologies have driven significant advances in lipid science. Th...
Recent developments in analytical technologies have driven significant advances in lipid science. Th...
Ions formed from lipids during electrospray ionization of crude lipid extracts have been mass-select...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
The position(s) of carbon-carbon double bonds within lipids can dramatically affect their structure ...
The position(s) of carbon-carbon double bonds within lipids can dramatically affect their structure ...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
The position(s) of carbon-carbon double bonds within lipids can dramatically affect their structure ...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...