Characterization of 1- and 2-monoacylglycerides by fast atom bombardment, collision-induced dissociation and tandem mass spectrometry
L. Nizigiyimana, Hilde Van den Heuvel, M. Clayes
Abstract
L. Nizigiyimana, Hilde Van den Heuvel, M. Clayes
Abstract
Monoacylglycerides containing saturated and monounsaturated acyl chains have been examined by fast atom bombardment (FAB), collision-induced dissociation (CID) and tandem mass spectrometry. The results show that low-energy CID of [M + H] + ions enables one to differentiate between 1- and 2-monoacylglycerides containing a monounsaturated acyl chain. Low-energy CID of [M + Li] + ions was found to be superior to that of [M + H] + ions because a differentiation could be made for the four isomeric pairs studied. However, the observed effects could only be noted at a very low collision energy (20 eV). High-energy CID of [M + Li] + and [M + Na] + ions was found to be more useful than that of [M + H] + ions because detailed structural information was obtained on the fatty acyl chain. In contrast to low-energy CID, no differences between 1- and 2-monoacylglycerides could be observed in the high-energy CID mode.
OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Monoacylglycerides containing saturated and monounsaturated acyl chains have been examined by fast atom bombardment (FAB), collision-induced dissociation (CID) and tandem mass spectrometry. The results show that low-energy CID of [M + H] + ions enables one to differentiate between 1- and 2-monoacylglycerides containing a monounsaturated acyl chain. Low-energy CID of [M + Li] + ions was found to be superior to that of [M + H] + ions because a differentiation could be made for the four isomeric pairs studied. However, the observed effects could only be noted at a very low collision energy (20 eV). High-energy CID of [M + Li] + and [M + Na] + ions was found to be more useful than that of [M + H] + ions because detailed structural information was obtained on the fatty acyl chain. In contrast to low-energy CID, no differences between 1- and 2-monoacylglycerides could be observed in the high-energy CID mode.
Key concepts: Chemistry, Collision-induced dissociation, Fast atom bombardment, Tandem mass spectrometry, Ion, Mass spectrometry, Dissociation (chemistry), Tandem