Glycerophospholipids with two, non-equivalent fatty acyl chains can adopt one of two isomeric forms depending on the relative position of substitutions on the glycerol backbone. These so-called sn-positional isomers can have distinct biophysical and biochemical behaviors making it desirable to uniquely assign their regiochemistries. Unambiguous assignment of such similar molecular structures in complex biological extracts is a significant challenge to current analytical technologies. We have recently reported a novel mass spectrometric method that combines collision- and ozone-induced dissociation in series (CID/OzID) to yield product ions characteristic of acyl chain substitution patterns in glycerophospholipids. Here phosphatidylcholines ...
AbstractThe use of negative ion mode fast-atom bombardment-collision-activated dissociation-tandem m...
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 ...
Glycerophospholipids with two, non-equivalent fatty acyl chains can adopt one of two isomeric forms ...
Glycerophospholipids with two, non-equivalent fatty acyl chains can adopt one of two isomeric forms ...
Glycerophospholipids (GPs) that differ in the relative position of the two fatty acyl chains on the ...
Glycerophospholipids (GPs) that differ in the relative position of the two fatty acyl chains on the ...
The complete structural elucidation of complex lipids, including glycerophospholipids, using only ma...
The complete structural elucidation of complex lipids, including glycerophospholipids, using only ma...
The complete structural elucidation of complex lipids, including glycerophospholipids, using only ma...
Glycerophospholipids (GPs) that differ in the relative position of the two fatty acyl chains on the ...
The position(s) of carbon-carbon double bonds within lipids can dramatically affect their structure ...
The differentiation of closely related lipid isomers is increasingly important to our evolving under...
The differentiation of closely related lipid isomers is increasingly important to our evolving under...
The position(s) of carbon-carbon double bonds within lipids can dramatically affect their structure ...
AbstractThe use of negative ion mode fast-atom bombardment-collision-activated dissociation-tandem m...
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 ...
Glycerophospholipids with two, non-equivalent fatty acyl chains can adopt one of two isomeric forms ...
Glycerophospholipids with two, non-equivalent fatty acyl chains can adopt one of two isomeric forms ...
Glycerophospholipids (GPs) that differ in the relative position of the two fatty acyl chains on the ...
Glycerophospholipids (GPs) that differ in the relative position of the two fatty acyl chains on the ...
The complete structural elucidation of complex lipids, including glycerophospholipids, using only ma...
The complete structural elucidation of complex lipids, including glycerophospholipids, using only ma...
The complete structural elucidation of complex lipids, including glycerophospholipids, using only ma...
Glycerophospholipids (GPs) that differ in the relative position of the two fatty acyl chains on the ...
The position(s) of carbon-carbon double bonds within lipids can dramatically affect their structure ...
The differentiation of closely related lipid isomers is increasingly important to our evolving under...
The differentiation of closely related lipid isomers is increasingly important to our evolving under...
The position(s) of carbon-carbon double bonds within lipids can dramatically affect their structure ...
AbstractThe use of negative ion mode fast-atom bombardment-collision-activated dissociation-tandem m...
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 ...