| Literature DB >> 17022823 |
Stéphane Roche1, Laurent Tiers, Monique Provansal, Marie-Thérèse Piva, Sylvain Lehmann.
Abstract
BACKGROUND: Surface-Enhanced Laser Desorption/Ionization - Time Of Flight (SELDI-TOF) has been proposed as new approach for blood biomarker discovery. However, results obtained so far have been often disappointing as this technique still has difficulties to detect low-abundant plasma and serum proteins.Entities:
Year: 2006 PMID: 17022823 PMCID: PMC1613235 DOI: 10.1186/1477-5956-4-20
Source DB: PubMed Journal: Proteome Sci ISSN: 1477-5956 Impact factor: 2.480
Figure 1Fractionation of serum protein by IgY12 spin columns followed by 1D and 2D electrophoresis. Panel a: 1D electrophoresis is performed using Hydragel separation kit (Sebia) which allows the detection of major serum proteins including Ig light chains, albumin, transferin, IgG, IgA, Haptoglobin, IgM and alpha-2-macroglobulin. Lane 1: original unfractionated serum; lane 2: molecular weight standard; lane 3: unbound protein fraction (see Data Supplements) and lane 4: IgY12 bound protein fraction. The same amount of total protein was loaded in each lane. Panel b-d: 2D electrophoresis gel of original unfractionated serum (panel b), IgY12 bound proteins (panel c), and Y12 unbound proteins (panel d). Each gel was load with 20 μg of proteins. Some protein spots (box 1 panel b), were present in both the original and the unbound fractions (panel d). Others (box 2, panel a-b) (albumin, haptoglobin.), where retained by the column and recovered in the bound fraction (panel c). Finally, unmasked by the fractionation, some "new" spots were detected only in the unbound fraction (box 3, figure b-d). These results were consistent with the work of Huang et al [18].
Repeatability and reproducibility of SELDI-TOF spectra before and after immunocapture.
| Minimum CV value | Maximum CV value | ||
| SELDI-TOF repeatability (p = 33) | 9.7 | 25.9 | 15.7 |
| SELDI-TOF reproducibility (p = 33) | 8.7 | 52.1 | 22.2 |
| Y12/SELDI-TOF repeatability (p = 31) | 6.4 | 32.5 | 16.7 |
| Y12/SELDI-TOF reproducibility (p = 30) | 7.8 | 57.9 | 25.3 |
Legend: The coefficient of variation (CV) was calculated for the "p" peaks detected in the SELDI-TOF spectra using the ProteinChip Software (Ciphergen Biosystems). The minimum and maximum CV values are indicated on the table, as well as the mean CV values. For the SELDI-TOF and Y12/SELDI-TOF repeatability, a serum sample was analysed 8 times the same day; for the reproducibility, the same sera was analysed for 4 consecutive days.
Summary of peak detection in the different fractions
| Detected peaks | Pearson Factor Between each replicate | Number of unique peaks | |
| Serum | 32 ± 1 | 0.90 | 0 |
| Bound compartment | 29 ± 1 | 0.97 | 3 |
| Unbound compartment | 41 ± 0 | 0.95 | 24 |
Legend: Fractionation of serum samples (n = 4) by IgY12 spin columns and SELDI-TOF analysis. Peaks were detected using ProteinChip Software (Ciphergen Biosystems) between 3,000 to 15,000 m/z with a ratio signal/noise of 3. Pearson factor is calculated between replicates of each fraction. Note: unique peaks are those not present in any of the two other fractions.
Figure 2SELDI-TOF analysis before and after fractionation using IgY12 spin columns. SELDI-TOF spectrum (between 3,000 and 15,000 m/z) of the original unfractionated serum (panel a), of the unbound (depleted) (panel b) and Y12 bound (panel c) protein fractions. Stars indicated peaks present only in one of the fraction. Panel d: hierarchical clustering using the peaks detected in the a to c panel (in duplicates) using the ProteinChip Software (Ciphergen Biosystems). Numbers on the top represent the m/z values of the peaks. Colors are related to relative distribution between the fractions; green: low level, red: high level, black average level. Triangles and stars indicated peaks that appeared specific of the unbound fraction or present in both bound and original fractions, respectively. Panel e: SEDLI-TOF spectra of pure IL-8 revealing a single peak with an apparent m/z value of 8560. Serum spiked with 0.1 ng/μL of IL-8 was analysed before (panel f) or after (panel g) immunodepletion. A peak (triangle) aligned to that of the IL-8 was only readily detected after depletion in the unbound fraction. The additional peak in this fraction (triangle) corresponded, as in panel c, to an additional serum peak detected only after depletion.