Table 1
The list of detected N-glycans sorted according to their structural type.
| Glycan type | m/z |
|---|---|
| High-Man | 1579.8; 1783.5; 1988.1; 2192.2; 2396.4 |
| C-Bi | 2227.4; 2431.5; 2736.8; 2792.7 |
| C-Bi-Fuc | 1836.1; 2040.2; 2605.7; 2966.9 |
| C-Tri | 3154.1; 3603.2 |
| C-Tri-Fuc | 2081.2; 3328.1; 3777.4 |
| C-Tetra | 3964.3 |
| C-Tetra-Fuc | 4138.4 |
| Hybrid | 2390.4 |
[i] Explanatory notes: m/z – mass-to-charge ratio, m/z values are experimental [M + Na]+; High-Man – high-mannose type of N-glycan; C-Bi – complex bi-antennary; C-Bi-Fuc – complex bi-antennary with Fucose; C-Tri – complex tri-antennary; C-Tri-Fuc – complex tri-antennary with Fucose; C-Tetra – complex tetra-antennary; C-Tetra-Fuc – complex tetra-antennary with Fucose; Hybrid – hybrid type of N-glycan.

Figure 1
The relative intensities of N-glycans in the experimental model of lithium pilocarpine (Li-Pilo) induced status epilepticus (SE) in blood sera in immature rats. N-glycans were assorted according to (a) sialylation and non-sialylation; (b) their glycan type. Explanatory notes: High-Man – high-mannose type of N-glycan; C-Bi – complex bi-antennary; C-Bi-Fuc – complex bi-antennary with Fucose; C-Tri – complex tri-antennary; C-Tri-Fuc – complex tri-antennary with Fucose; C-Tetra – complex tetra-antennary; C-Tetra-Fuc – complex tetra-antennary with Fucose; Hybrid – hybrid type of N-glycan. Data were evaluated using GraphPad Software. Unpaired t-test with two tailed analysis was used to evaluate the difference among the experimental groups. The statistically significant difference are marked as * for p < 0.05 and ** for p < 0.01. Data were expressed as means ± SEM.