| Literature DB >> 28287421 |
Pilar Castro-Gómez1, Olimpio Montero2, Javier Fontecha3.
Abstract
Buttermilk, a byproduct of butter manufacturing, has gained considerable attention due to its high concentration of polar lipids as phospho- and sphingolipids from the milk fat globule membrane (MFGM). These polar lipids (PLs) are essential components of all cellular membranes and exert a variety of indispensable metabolic, neurological, and intracellular signaling processes. Despite its importance, there are few research studies that report a comprehensive characterization of the lipid molecular species of MFGM that could contribute to a better understanding of their putative healthful activities. In this study, procedures such as pressurized liquid extraction of polar and nonpolar lipids and their fractionation by flash chromatography have been carried out. The obtained fractions were submitted to an exhaustive characterization from a lipidomic point of view. The characterization includes new data about the identification and quantification of triacylglycerides (TAG), diacylglycerides (DAG), and phospho- and sphingolipids using different chromatographic techniques. The fatty acid profile was comparable to that of the milk fat but with a highly diverse composition of fatty acids. Molecular species have also been determined by using ultra-high performance liquid chromatography/quadruple-time-of-flight mass spectrometry (UPLC/QToF-MS). The TAG (16:0/16:0/6:0) and TAG (16:0/16:0/8:0) were the predominant saturated TAG species and TAG (14:0/18:1/16:0) and TAG (16:0/16:0/18:1) presented the highest content of monounsaturated TAG species. Furthermore; over 30 molecular species of phosphatidylcholine (PC), phosphatidylethanolamine (PE), phosphatidylserine (PS), and phosphatidylinositol (PI) could be identified within PL, with PC (16:0/18:1) being the most abundant species. Whereas C16:0 was found to be the preferred FA in TAGs, it was C18:1 in PLs. Several ganglioside species have also been characterized with d18:1 ceramide moiety and secondary acyl chains ranging from C20:0 to C26:1. This approach could broaden the applications of high-resolution mass spectrometry for a better understanding of the role of MFGM and its functionality.Entities:
Keywords: UPLC-QToF-MS; buttermilk; phospholipids; polar lipids; sphingolipids
Mesh:
Substances:
Year: 2017 PMID: 28287421 PMCID: PMC5372621 DOI: 10.3390/ijms18030605
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Fatty acid composition (mean values and standard deviations) of buttermilk (BM) and isolated lipid fractions F1 and F2 (in %), as determined by GC-MS.
| Fatty Acid | BM | F1 | F2 |
|---|---|---|---|
| C4:0 | 4.33 a ± 0.19 | 4.44 a ± 0.22 | 4.65 a ± 0.07 |
| C6:0 | 2.39 a ± 0.15 | 2.25 a ± 0.12 | 2.55 a ± 0.02 |
| C8:0 | 1.23 a ± 0.07 | 1.48 a ± 0.06 | 1.21 a ± 0.01 |
| C10:0 | 2.70 a ± 0.10 | 2.73 a ± 0.01 | 2.63 a ± 0.06 |
| C10:1 | 0.22 a ± 0.02 | 0.28 a ± 0.01 | 0.21 a ± 0.01 |
| C12:0 | 3.11 a ± 0.12 | 3.36 a ± 0.01 | 3.08 a ± 0.04 |
| C14:0 | 11.69 a ± 0.31 | 12.55 a ± 0.08 | 12.14 a ± 0.04 |
| C15:0 anteiso | 0.22 a ± 0.01 | 0.20 a ± 0.01 | 0.22 a ± 0.01 |
| C15:0 iso | 0.42 a ± 0.01 | 0.35 b ± 0.01 | 0.43 a ± 0.01 |
| C14:1 | 0.54 a ± 0.02 | 0.27 b ± 0.01 | 0.36 c ± 0.01 |
| C15:0 | 1.19 a ± 0.02 | 1.32 b ± 0.01 | 1.20 a ± 0.01 |
| C16:0 iso | 0.28 a ± 0.01 | 0.25 b ± 0.01 | 0.30 a ± 0.01 |
| C16:0 | 35.39 a ± 0.05 | 34.47 a ± 0.34 | 39.96 b ± 0.09 |
| C17:0 anteiso | 0.38 a ± 0.03 | 0.28 b ± 0.02 | 0.41 a ± 0.01 |
| C16:1 | 1.42 a ± 0.03 | 1.19 b ± 0.01 | 1.07 b ± 0.01 |
| C17:0 | 0.63 a,b ± 0.03 | 0.51 a ± 0.01 | 0.73 b ± 0.03 |
| C18:0 | 11.23 a,b ± 0.36 | 9.89 a ± 0.07 | 13.01 b ± 0.08 |
| C18:1 t6–8 | 0.18 a ± 0.01 | 0.10 b ± 0.01 | 0.18 a ± 0.01 |
| C18:1 t9 | 0.22 a ± 0.01 | 0.20 a ± 0.01 | 0.18 a ± 0.01 |
| C18:1 t10 | 0.29 a ± 0.04 | 0.23 b ± 0.01 | 0.31 a ± 0.01 |
| C18:1 t11 | 1.02 a ± 0.02 | 0.82 b ± 0.01 | 1.10 c ± 0.01 |
| C18:1 t12 | 0.30 a ± 0.01 | 0.19 b ± 0.01 | 0.31 a ± 0.01 |
| C18:1 c9 | 17.34 a ± 0.29 | 18.51 a ± 0.06 | 10.73 b ± 0.01 |
| C18:1 t15 | 0.31 a ± 0.03 | 0.31 a ± 0.04 | 0.34 a ± 0.03 |
| C18:1 c11 | 0.59 a ± 0.04 | 0.59 a ± 0.01 | 0.34 b ± 0.03 |
| C18:1 c12 | 0.25 a ± 0.01 | 0.20 b ± 0.01 | 0.15 c ± 0.01 |
| C18:1 t14 + 16 | 0.21 a ± 0.02 | 0.11 b ± 0.01 | 0.23 a ± 0.01 |
| Total | 2.54 a ± 0.13 | 1.84 b ± 0.06 | 2.42 a ± 0.07 |
| C18:2 c9,c12 | 0.60 a ± 0.02 | 1.75 b ± 0.03 | 0.41 c ± 0.02 |
| C18:2 c9,t11 | 0.03 a ± 0.01 | 0.09 b ± 0.01 | 0.15 c ± 0.01 |
| C20:0 | 0.10 a ± 0.02 | 0.07 a ± 0.01 | 0.11 a ± 0.02 |
| ∑ SFA | 75.96 a ± 0.55 a | 74.78 a ± 0.04 | 83.52 b ± 0.10 |
| ∑ MUFA | 23.31 a ± 0.43 a | 23.21 a ± 0.06 | 15.68 b ± 0.11 |
| ∑ PUFA | 0.74 a ± 0.11a | 2.01 b ± 0.02 | 0.79 a ± 0.02 |
| ∑ | 18.23 a ± 0.36 a | 19.35 a ± 0.07 | 11.26 b ± 0.06 |
| ∑ | 2.54 a ± 0.13 a | 1.84 b ± 0.06 | 2.42 a ± 0.07 |
c, cis double bond; t, trans double bond; SFA, saturated FA; MUFA, monounsaturated FA; PUFA, polyunsaturated FA. Different superscript letters a, b or c in the same row mean significant differences between buttermilk and fractions F1 and F2 (p < 0.05).
Figure 1Lipid classes composition of buttermilk (BM) and isolated fractions F1 and F2 (in % of total fat) and phospholipid content (% of PL) determined by HPLC-ELSD. TAG triacylglycerols; DAG, diacylglycerols; CHOL + FFA, cholesterol + free fatty acids; MAG, monoacylglycerols; PL, polar lipids; PE, phosphatidylethanolamine; PI, phosphatidylinositol; PS, phosphatidylserine; PC, phosphatidylcholine; SM, sphingomyelin.
Figure 2Chromatographic profile of lipid classes (DAG, diacylglycerides; CHOL, cholesterol; MAG, monoacylglycerides; PL, polar lipids) and molecular species of triacylglycerides (TAG) by carbon number (CN) of buttermilk (BM) and isolated fractions F1 and F2 determined by GC-FID.
Mean values of triacylglycerol (TAG) content according to carbon number (CN) of buttermilk (BM) and isolated lipid fraction F2 determined by GC-FID.
| TAG Group (%) | BM | F2 | |
|---|---|---|---|
| TAG CN28 | 1.03 ± 0.04 | <0.1 | 0.001 |
| TAG CN30 | 1.65 ± 0.10 | <0.1 | 0.001 |
| TAG CN32 | 4.29 ± 0.21 | 1.40 ± 0.24 | 0.000 |
| TAG CN34 | 8.46 ± 3.20 | 10.90 ± 0.81 | 0.046 |
| TAG CN36 | 10.54 ± 0.17 | 19.04 ± 0.98 | 0.004 |
| TAG CN38 | 18.30 ± 0.11 | 16.80 ± 0.45 | 0.051 |
| TAG CN40 | 12.53 ± 0.27 | 12.62 ± 0.62 | 0.830 |
| TAG CN42 | 8.17 ± 0.41 | 9.17 ± 0.37 | 0.957 |
| TAG CN44 | 7.61 ± 0.66 | 7.93 ± 0.30 | 0.494 |
| TAG CN46 | 6.48 ± 0.43 | 6.49 ± 0.63 | 0.984 |
| TAG CN48 | 7.69 ± 1.10 | 6.09 ± 0.43 | 0.093 |
| TAG CN50 | 7.59 ± 0.67 | 5.99 ± 0.70 | 0.871 |
| TAG CN52 | 5.65 ± 0.86 | 3.58 ± 1.08 | 0.742 |
| TAG CN54 | <0.1 | <0.1 | - |
The p-value is given for each TAG group among BM and F2 fraction (p < 0.05).
Triacylglicerol (TAG) molecular species content in the isolated lipid fraction F2 obtained from buttermilk ordered by carbon number (CN) and double bonds (DB) as determined by UPLC/QToF-MS.
| Time (min) | Exact Mass | Content (%) | CN/DB | Molecular Species |
|---|---|---|---|---|
| 0.93 | 470.3616 | 0.18 | 24:0 | TAG(8:0/8:0/8:0) |
| 0.97 | 578.4507 | 0.15 | 32:2 | TAG(14:1/14:1/4:0) |
| 0.98 | 496.3795 | 0.08 | 26:1 | TAG(14:1/8:0/4:0) |
| 1.03 | 498.3913 | 0.64 | 26:0 | TAG(14:0/8:0/4:0) |
| 1.07 | 524.4069 | 0.29 | 28:1 | TAG(16:1/8:0/4:0) |
| 1.13 | 526.4207 | 1.02 | 28:0 | TAG(16:0/8:0/4:0) |
| 1.45 | 608.4994 | 1.49 | 34:1 | TAG(16:1/14:0/4:0) |
| 1.68 | 636.5303 | 2.41 | 36:1 | TAG(14:0/14:1/8:0) |
| 1.72 | 610.5145 | 5.58 | 34:0 | TAG(16:0/12:0/6:0) |
| 1.73 | 662.5461 | 0.84 | 38:2 | TAG(16:1/16:1/6:0) |
| 1.96 | 690.5734 | 1.06 | 40:2 | TAG(14:1/14:1/12:0) |
| 2.03 | 638.5447 | 7.60 | 36:0 | TAG(12:0/12:0/12:0) |
| 2.40 | 666.5769 | 8.81 | 38:0 | TAG(16:0/16:0/6:0) |
| 2.67 | 772.6514 | 0.21 | 48:3 | TAG(16:1/16:1/16:1) |
| 2.67 | 720.6229 | 3.36 | 42:1 | TAG(18:1/16:0/8:0) |
| 2.70 | 694.6105 | 7.59 | 40:0 | TAG(16:0/16:0/8:0) |
| 2.95 | 734.6395 | 0.46 | 43:1 | TAG(14:0/14:1/15:0) |
| 3.15 | 774.6678 | 1.00 | 46:2 | TAG(16:1/16:0/14:1) |
| 3.18 | 748.6538 | 4.51 | 44:1 | TAG(16:0/14:0/14:1) |
| 3.25 | 722.6372 | 0.71 | 42:0 | TAG(16:0/14:0/12:0) |
| 3.53 | 788.6851 | 0.01 | 47:2 | TAG(14:1/15:0/18:1) |
| 3.84 | 802.6989 | 1.50 | 48:2 | TAG(16:0/16:1/16:1) |
| 4.71 | 830.7292 | 2.97 | 50:2 | TAG(16:1/18:1/16:0) |
| 3.87 | 776.6866 | 4.39 | 46:1 | TAG(18:1/14:0/14:0) |
| 4.30 | 790.7012 | 1.67 | 47:1 | TAG(18:1/14:0/15:0) |
| 4.37 | 764.6894 | 1.55 | 45:0 | TAG(16:0/15:0/14:0) |
| 4.71 | 856.7448 | 1.37 | 52:3 | TAG(16:0/18:1/18:2) |
| 4.77 | 804.7145 | 6.17 | 48:1 | TAG(14:0/18:1/16:0) |
| 4.87 | 778.6984 | 3.13 | 46:0 | TAG(14:0/14:0/18:0) |
| 5.12 | 818.7254 | 1.79 | 49:1 | TAG(15:0/16:0/18:1) |
| 5.19 | 792.7154 | 0.75 | 47:0 | TAG(16:0/14:0/17:0) |
| 5.33 | 818.7254 | 0.69 | 49:1 | TAG(16:0/18:1/15:0) |
| 5.43 | 792.7154 | 0.80 | 47:0 | TAG(16:0/16:0/15:0) |
| 5.94 | 832.7463 | 7.04 | 50:1 | TAG(16:0/16:0/18:1) |
| 6.05 | 806.7285 | 3.19 | 48:0 | TAG(16:0/16:0/16:0) |
| 6.19 | 828.7155 | 0.28 | 50:3 | TAG(18:2/18:1/14:0) |
| 6.22 | 884.7746 | 1.13 | 54:3 | TAG(18:1/18:1/18:1) |
| 6.37 | 872.7741 | 0.72 | 53:2 | TAG(18:1/18:1/17:0) |
| 6.40 | 846.7602 | 1.41 | 51:1 | TAG(16:0/17:0/18:1) |
| 6.46 | 820.7466 | 1.13 | 49:0 | TAG(16:0/16:0/17:0) |
| 6.81 | 820.7466 | 0.89 | 49:0 | TAG(16:0/15:0/18:0) |
| 7.39 | 834.7604 | 0.19 | 50:0 | TAG(16:0/16:0/18:0) |
| 7.50 | 886.7917 | 2.60 | 54:2 | TAG(18:0/18:1/18:1) |
| 7.64 | 860.7755 | 5.50 | 52:1 | TAG(16:0/18:0/18:1) |
Species detected as [M + NH4]+ and [M + NH4 + H3CCN]+.
Phosphatidylcholine (PC) and sphingomyelin (SM) content in the F1 fraction of buttermilk as determined by UPLC/QToF-MS. The acyl chain compositions of the molecular species are shown.
| Positive Mode | Negative Mode | ||||||||
|---|---|---|---|---|---|---|---|---|---|
| Time (min) | Exact Mass | Content (%) | CN/DB | Molecular Species | Time (min) | Exact Mass | Content (%) | CN/DB | Molecular Species |
| 3.75 | 496.3418 | 0.31 | 16:0 | Lyso-PC(16:0) | 3.35 | 512.30 | 2.10 | 14:0 | Lyso-PC(14:0) |
| 3.93 | 522.355 | 0.24 | 18:1 | Lyso-PC(18:1) | 4.08 | 540.33 | 26.29 | 16:0 | Lyso-PC(16:0) |
| 4.95 | 524.368 | 0.20 | 18:0 | Lyso-PC(18:0) | 4.28 | 566.35 | 6.72 | 18:1 | Lyso-PC(18:1) |
| 6.53 | 734.5698 | 13.09 | 32:0 | PC(16:0/16:0) | 6.71 | 802.56 | 9.03 | 34:2 | PC(16:0/18:2) |
| 6.55/8.03 | 756.5527 | 1.21 | 34:3 | PC(16:1/18:2) | 6.8 | 828.58 | 1.99 | 36:3 | PC(18:1/18:2) |
| 6.66 | 760.5854 | 29.61 | 34:1 | PC(16:0/18:1) | 7.45 | 812.58 | 6.23 | 36:4/36:3 | PC(O-18:2/18:2) |
| 6.82 | 786.6024 | 9.38 | 36:2 | PC(18:1/18:1) | /(P-18:1/18:2) | ||||
| 7.03 | 786.6024 | 4.71 | 36:3 | PC(18:0/18:2) | 8.27 | 778.56 | 14.12 | 32:2 | PC(16:0/16:0) |
| 7.56 | 678.5092 | 1.94 | 28:0 | PC(14:0/14:0), (12:0/16:0) | 8.39 | 804.57 | 23.29 | 34:1 | PC(16:0/18:1) |
| 7.75 | 730.5361 | 0.65 | 32:2 | PC(16:1/16:1) | 8.49 | 722.50 | 1.55 | 28:0 | PC(12:0/16:0), |
| 8.02/8.5 | 782.5671 | 1.72 | 36:4 | PC(18:2/18:2) | (14:0/14:0) | ||||
| 8.46 | 706.5352 | 11.72 | 30:0 | PC(14:0/16:0), (12:0/18:0) | 8.52 | 830.59 | 7.13 | 36:2 | PC(18:1/18:1) |
| 8.55 | 732.5501 | 4.65 | 32:1 | PC(16:0/16:1) | 9.43 | 814.60 | 1.56 | 36:3/36:2 | PC(O-18:1/18:2) |
| 8.6 | 762.6018 | 2.56 | 34:0 | PC(16:0/18:0) | /(P-18:0/18:2) | ||||
| 8.76 | 758.5701 | 8.82 | 34:2 | PC(16:0/18:2) | |||||
| 8.79 | 788.6178 | 4.95 | 36:1 | PC(18:0/18:1) | |||||
| 8.84 | 784.5816 | 4.24 | 36:3 | PC(18:1/18:2) | |||||
| 8.84 | 784.5816 | 4.24 | 36:3 | PC(18:1/18:2) | |||||
| 5.58 | 705.588 | 5.16 | 34:0 | SM(d18:0/16:0) | 6.37 | 747.56 | 34.67 | 34:1 | SM(d18:1/16:0) |
| 6.16 | 759.637 | 0.81 | 38:1 | SM(d18:1/20:0) | 7.47 | 749.58 | 29.64 | 34:0 | SM(d18:0/16:0) |
| 7.69 | 675.5415 | 14.90 | 32:1 | SM(d16:1/16:0) | 8.66 | 719.53 | 24.49 | 32:1 | SM(d16:1/16:0) |
| 8.19 | 677.5576 | 6.53 | 32:0 | SM(d18:0/14:0) | 9.32 | 721.55 | 11.19 | 32:0 | SM(d18:0/14:0) |
| 8.18 | 689.5562 | 7.92 | 33:1 | SM(d18:1/15:0) | |||||
| 8.58/8.77 | 703.5729 | 64.69 | 34:1 | SM(d18:1/16:0) | |||||
Species detected as [M + H]+ and [M + HCOOH–H]−. Lyso-PC, lyso-phosphatidylcholine; PC, phosphatidylcholine; CN, carbon number; DB, double bonds.
Glycerophospholipid classes: Phosphatidylethanolamine (PE), phosphatidylinositol (PI) and phosphatidylserine (PS) content in the F1 fraction of buttermilk as determined by UPLC/QToF-MS. The acyl chain compositions of the molecular species are shown.
| Positive Mode | Negative Mode | ||||||||
|---|---|---|---|---|---|---|---|---|---|
| Time (min) | Exact Mass | Content (%) | CN/DB | Molecular Species | Time (min) | Exact Mass | Content (%) | CN/DB | Molecular Species |
| 3.99 | 480.3053 | 1.13 | 18:1 | Lyso-PE(18:1) | 3.53 | 476.2809 | 0.81 | 18:2 | Lyso-PE(18:2) |
| 7.07 | 718.5381 | 2.24 | 34:1 | PE(16:0/18:1), (16:1/18:0) | 4.09 | 478.2934 | 1.12 | 16:0 | Lyso-PE(16:0) |
| 7.22/7.45/8.21 | 744.5569 | 9.72 | 36:2 | PE(18:1/18:1), (18:0/18:2) | 4.3 | 478.2934 | 1.04 | 18:1 | Lyso-PE(18:1) |
| 7.99 | 692.5201 | 9.46 | 32:0 | PE(16:0/16:0), (20:0/12:0), (18:0/14:0), (17:0/15:0) | 6.61 | 688.4931 | 2.72 | 32:2 | PE(14:0/18:2) |
| 8.86/9.1 | 720.5502 | 56.58 | 34:0 | PE(20:0/14:0), (18:0/16:0), (17:0/17:0) | 7.19 | 740.5279 | 26.89 | 36:3 | PE(18:1/18:2) |
| 8.95 | 746.5662 | 8.70 | 36:1 | PE(18:0/18:1), (20:0/16:1) | 7.06 | 714.5073 | 9.39 | 34:2 | PE(16:1/18:1), (16:0/18:2) |
| 9.06 | 716.5188 | 12.14 | 34:2 | PE(16:1/18:1), (18:2/16:0) | 8.87 | 716.5193 | 15.89 | 34:1 | PE(16:0/18:1), (16:1/18:0) |
| 9.06 | 742.5395 | 42.13 | 36:2 | PE(18:1/18:1), (18:0/18:2) | |||||
| 6.7 | 790.5614 | 39.37 | 36:1 | PS(18:1/18:0), (16:1/20:0) | 7.45 | 786.5295 | 80.91 | 36:2 | PS(18:1/18:1), (18:2/18:2) |
| 6.99 | 792.5767 | 60.63 | 36:0 | PS(16:0/20:0), (18:0/18:0) | 9.39 | 788.5384 | 19.09 | 36:1 | PS(18:0/18:1), (16:1/20:0) |
| 8.26 | 854.5759 | 19.69 | 34:1 | PI(16:0/18:1), (16:1/18:0) | 7.76 | 863.5589 | 100.00 | 36:1 | PI(18:0/18:1) |
| 8.33/8.46 | 880.5894 | 80.31 | 36:2 | PI(18:1/18:1), (18:0/18:2) | |||||
Species detected as [M + NH4]+ and [M − H]−. Lyso-PE, lyso-phosphatidylethanolamine; PE, phosphatidylethanolamine; PI, phosphatidylinositol; PS, phosphatidylserine; CN, carbon number; DB, double bonds.
Figure 3Positive ion mode spectrum of m/z 706.54 corresponding to PC (14:0/16:0) and the phosphocholine fragment obtained in the MSE (high energy function) spectrum of Fraction 1 of buttermilk by UPLC-QToF-MS.
Values of m/z from positive ionization that are tentatively ascribed to glycosphingolipid species according to the neutral mass value and the LipidMaps database (http://www.lipidmaps.org). The elemental composition that closely matches the experimental mass was chosen amongst those annotated in the LipidMaps database. Mexp is the exact mass calculated from the experimental m/z value, and MTh is the theoretical exact mass corresponding to the proposed elemental composition.
| No. | Ion | Exact Mass (Mexp − MTh) | Elemental Composition | Glycosphingolipid Class | Tentative Ceramide | |
|---|---|---|---|---|---|---|
| 1 | 1013.75 | [M + 2H]+2 | 2025.11 (+0.37) | C94H168N4O42 | Globo/Lacto/Neolacto | -Cer(d18:1/22:0) |
| 2 | 1187.87 | [M + 2H]+2 | 2373.23 (+0.49) | C107H188N6O51 | Acidic | -Cer(d18:1/22:0) |
| 3 | 984.72 | [M + 2H]+2 | 1967.07 (+0.35) | C91H162N4O41 | Acidic | -Cer(d18:1/22:0) |
| 4 | 797.92 | [M + 3H]+3 | 2390.25 (+0.48) | C108H191N5O52 | Lacto/Neolacto | -Cer(d18:1/22:0) |
| 5 | 875.31 | [M + 3H]+3 | 2623.30 (−0.39) | C116H202N6O59 | Acidic (4 isomers) | -Cer(d18:1/22:0) |
| 6 | 855.97 | [M + 3H]+3 | 2565.29 (−0.43) | C114H200N6O57 | Lacto/Neolacto | -Cer(d18:1/20:0) |
| 2565.32 (−0.46) | C116H204N4O57 | Neolacto (2 isomers) | -Cer(d18:1/26:1) | |||
| 7 | 1158.83 | [M + 2H]+2 | 2315.25 (+0.39) | C107H190N4O49 | Acidic (3 isomers) | -Cer(d18:1/26:0) |
| 778.58 | [M + 2H + NH4]+3 | 2315.25 (+0.43) | C107H190N4O49 | Acidic (3 isomers) | -Cer(d18:1/26:0) | |
| [M + 2H + NH4]+3 | 2298.23 (+0.41) | C106H187N5O48 | Lacto/Neolacto (2 isomers) | -Cer(d18:1/26:1) | ||
| 8 | 836.62 | [M + 3H]+3 | 2507.31 (+0.47) | C114H202N4O55 | Neolacto | -Cer(d18:1/24:0) |
| 9 | 955.72 | [M + 2H]+2 | 1909.03 (+0.39) | C88H156N4O40 | Acidic (3 isomers) | -Cer(d18:1/22:0) |
| 10 | 926.70 | [M + 2H]+2 | 1851.05 (+0.33) | C88H158N2O38 | Globo | -Cer(d18:1/26:1) |
| 1851.02 (+0.36) | C86H154N4O38 | Lacto/Neolacto | -Cer(d18:1/20:0) | |||
| 11 | 1129.84 | [M + 2H]+2 | 2257.21 (+0.45) | C104H184N4O48 | Neolacto (2 isomers)/Acidic | -Cer(d18:1/26:1)/-Cer(d18:1/26:0) |
| 759.23 | [M + 2H + NH4]+3 | 2257.21 (+0.45) | -Cer(d18:1/26:1)/-Cer(d18:1/26:0) | |||
| 12 | 897.66 | [M + 2H]+2 | 1793.04 (+0.26) | C86H156N2O36 | Lacto/Neolacto (2 isomers) | -Cer(d18:1/24:0) |
| 13 | 946.722 | [M + H]+ | 945.7116 (+0.0025) | C52H99NO13 | Neutral | -LacCer(d18:1/22:0) |
| 14 | 1100.81 | [M + 2H]+2 | 2199.20 (+0.40) | C102H182N4O46 | Neolacto | -Cer(d18:1/24:0) |
| 739.89 | [M + 2H + NH4]+3 | 2199.20 (+0.41) | -Cer(d18:1/24:0) | |||
| [M + 3H]+3 | 2216.16 (+0.47) | C100H177N5O48 | Lacto/Neolacto (2 isomers) | -Cer(d18:1/20:0) | ||
| 15 | 817.28 | [M − H2O + 3H]+3 | 2467.25 (−0.42) | C110H194N4O56 | Neolacto (2 isomers) | -Cer(d18:1/20:0) |
| [M + 2H + NH4]+3 | 2432.26 (−0.47) | C110H193N5O53 | Neolacto (3 isomers) | -Cer(d18:1/24:1) | ||
| 16 | 1071.79 | [M + 2H]+2 | 2141.16 (+0.40) | C99H176N4O45 | Acidic (9 isomers) | -Cer(d18:1/24:0) |
| 720.54 | [M + 2H + NH4]+3 | 2141.16 (+0.40) | -Cer(d18:1/24:0) | |||
| [M + 3H]+3 | 2158.12 (+0.47) | C97H171N5O47 | Acidic | -Cer(d18:1/20:0) | ||
| 17 | 1042.77 | [M + 2H]+2 | 2083.12 (+0.40) | C96H170N4O44 | Acidic (4 isomers) | -Cer(d18:1/24:0) |
| 701.20 | [M + 2H + NH4]+3 | 2083.12 (+0.42) |
Values of m/z provided here were detected under positive ionization. From the observed m/z value the corresponding neutral mass value (M) was calculated by taking into account the posible ions [M + nH]+, [M + NH4 + (n − 1)H]+, [M + (n − 1)NH4 + (n − 2)H]+ or [M + nNH4]+ where n = 2 or 3. Ganglioside species annotated in the LipidMaps database (http://www.lipidmaps.org) that mached the calculated M within an error of 0.5 Da were considered as tentative ganglioside species corresponding to the observed m/z. The exact mass corresponding to the elemental composition of the selected ganglioside species is provided along with the error (between brackets) for the calculated M from the m/z value. Mexp is the exact mass calculated from the experimental m/z value, and MTh is the theoretical exact mass corresponding to the proposed ganglioside elemental composition. The ceramide moiety is only annotated in this table because of the potential variability of the sugar moiety that was not determined.
Figure 4Extracted ion chromatograms (EICs) of some m/z values tentatively ascribed to gangliosides (left panels). Mass spectra of major m/z values with double or triple charged ions that have been ascribed to gangliosides (right).