Revealing the inherent molecular diversity of lipid biology requires advanced analytical technologies. Distinguishing phospholipids that differ in the position(s) of carbon-carbon double bonds within their acyl chains presents a particular challenge because of their similar chromatographic and mass spectral behaviours. Here or the first time we combine reversed-phase liquid chromatography for separation of isomeric phospholipids with on-line mass spectral analysis by ozone-induced dissociation (OzID) for unambiguous double bond position assignment. The customised tandem linear ion-trap mass spectrometer used in our study is capable of acquiring OzID scans on a chromatographic timescale. Resolving the contributions of isomeric lipids that ar...
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 ...
Revealing the inherent molecular diversity of lipid biology requires advanced analytical technologie...
The inability of current mass spectrometry techniques to differentiate phospholipid isomers results ...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
The inability of current mass spectrometry techniques to differentiate phospholipid isomers results ...
Ions formed from lipids during electrospray ionization of crude lipid extracts have been mass-select...
The complete structural elucidation of complex lipids, including glycerophospholipids, using only ma...
The complete structural elucidation of complex lipids, including glycerophospholipids, using only ma...
Ions formed from lipids during electrospray ionization of crude lipid extracts have been mass-select...
Ions formed from lipids during electrospray ionization of crude lipid extracts have been mass-select...
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...
The common etiological feature among the majority, if not all, of human diseases, is the impairment ...
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 ...
Revealing the inherent molecular diversity of lipid biology requires advanced analytical technologie...
The inability of current mass spectrometry techniques to differentiate phospholipid isomers results ...
Ozone-induced dissociation (OzID) exploits the gas-phase reaction between mass-selected lipid ions a...
The inability of current mass spectrometry techniques to differentiate phospholipid isomers results ...
Ions formed from lipids during electrospray ionization of crude lipid extracts have been mass-select...
The complete structural elucidation of complex lipids, including glycerophospholipids, using only ma...
The complete structural elucidation of complex lipids, including glycerophospholipids, using only ma...
Ions formed from lipids during electrospray ionization of crude lipid extracts have been mass-select...
Ions formed from lipids during electrospray ionization of crude lipid extracts have been mass-select...
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...
The common etiological feature among the majority, if not all, of human diseases, is the impairment ...
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 ...