Application of Chip-Based Nanoelectrospray Ion Trap Mass Spectrometry to Compositional and Structural Analysis of Gangliosides in Human Fetal Cerebellum

Two native ganglioside mixtures from normal human fetal cerebellum in the 15th (Cc15) and 40th (Cc40) gestational week were subjected to NanoMate high capacity ion trap (HCT) mass spectrometric (MS) and collision induced dissociation (CID) tandem MS (MS 2 ) analysis under thoroughly optimized experi...

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Published inAnalytical letters Vol. 44; no. 6; pp. 1036 - 1049
Main Authors Mosoarca, Cristina, Ghiulai, Roxana M., Novaconi, Cristina R., Vukelić, Željka, Chiriac, Adrian, Zamfir, Alina D.
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Published Philadelphia, PA Taylor & Francis Group 29.03.2011
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Abstract Two native ganglioside mixtures from normal human fetal cerebellum in the 15th (Cc15) and 40th (Cc40) gestational week were subjected to NanoMate high capacity ion trap (HCT) mass spectrometric (MS) and collision induced dissociation (CID) tandem MS (MS 2 ) analysis under thoroughly optimized experimental conditionns. An total of 56 different species were identified in Cc15 and 54 in Cc40. By employing CID MS 2 molecular ions, related GD1 (d18:1/20:0) and GM2 (d18:1/19:0) species were structurally characterized in a high throughput mode. The method provided elevated ionization efficiency, high speed of analysis, almost 100% reproducibility at sample consumption per experiment situated in the femtomole range.
AbstractList Two native ganglioside mixtures from normal human fetal cerebellum in the 15th (Cc15) and 40th (Cc40) gestational week were subjected to NanoMate high capacity ion trap (HCT) mass spectrometric (MS) and collision induced dissociation (CID) tandem MS (MS 2 ) analysis under thoroughly optimized experimental conditionns. An total of 56 different species were identified in Cc15 and 54 in Cc40. By employing CID MS 2 molecular ions, related GD1 (d18:1/20:0) and GM2 (d18:1/19:0) species were structurally characterized in a high throughput mode. The method provided elevated ionization efficiency, high speed of analysis, almost 100% reproducibility at sample consumption per experiment situated in the femtomole range.
Two native ganglioside mixtures from normal human fetal cerebellum in the 15th (Cc15) and 40th (Cc40) gestational week were subjected to NanoMate high capacity ion trap (HCT) mass spectrometric (MS) and collision induced dissociation (CID) tandem MS (MS2) analysis under thoroughly optimized experimental conditionns. An total of 56 different species were identified in Cc15 and 54 in Cc40. By employing CID MS2 molecular ions, related GD1 (d18:1/20:0) and GM2 (d18:1/19:0) species were structurally characterized in a high throughput mode. The method provided elevated ionization efficiency, high speed of analysis, almost 100% reproducibility at sample consumption per experiment situated in the femtomole range.
Author Vukelić, Željka
Ghiulai, Roxana M.
Zamfir, Alina D.
Mosoarca, Cristina
Chiriac, Adrian
Novaconi, Cristina R.
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Keywords Cerebellum
Ion trap mass spectrometry
Electrospray
Mixture
Ion trap
Efficiency
High speed
Ion spectrometry
Dissociation
Chip-nanoelectrospray
Human
Automation
Collisional activation
Sample
System on a chip
Method
Molecular ions
Ganglioside
NanoMate
Ionization
Reproducibility
Mass spectrometry MS/MS
Application
Mass spectrometry
Gangliosides
Structural analysis
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Snippet Two native ganglioside mixtures from normal human fetal cerebellum in the 15th (Cc15) and 40th (Cc40) gestational week were subjected to NanoMate high capacity...
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SubjectTerms Analytical chemistry
Automation
Cerebellum
Chemistry
Chip-nanoelectrospray
Exact sciences and technology
Gangliosides
Ion trap mass spectrometry
NanoMate
Spectrometric and optical methods
Title Application of Chip-Based Nanoelectrospray Ion Trap Mass Spectrometry to Compositional and Structural Analysis of Gangliosides in Human Fetal Cerebellum
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