| Literature DB >> 25036192 |
H White1, L Deprez2, P Corbisier2, V Hall3, F Lin1, S Mazoua2, S Trapmann2, A Aggerholm4, H Andrikovics5, S Akiki6, G Barbany7, N Boeckx8, A Bench9, M Catherwood10, J-M Cayuela11, S Chudleigh12, T Clench13, D Colomer14, F Daraio15, S Dulucq16, J Farrugia17, L Fletcher18, L Foroni19, R Ganderton20, G Gerrard19, E Gineikienė21, S Hayette22, H El Housni23, B Izzo24, M Jansson25, P Johnels26, T Jurcek27, V Kairisto28, A Kizilors29, D-W Kim30, T Lange31, T Lion32, K M Polakova33, G Martinelli34, S McCarron35, P A Merle36, B Milner37, G Mitterbauer-Hohendanner38, M Nagar39, G Nickless40, J Nomdedéu41, D A Nymoen42, E O Leibundgut43, U Ozbek44, T Pajič45, H Pfeifer46, C Preudhomme47, K Raudsepp48, G Romeo49, T Sacha50, R Talmaci51, T Touloumenidou52, V H J Van der Velden53, P Waits54, L Wang55, E Wilkinson56, G Wilson57, D Wren58, R Zadro59, J Ziermann60, K Zoi61, M C Müller62, A Hochhaus60, H Schimmel2, N C P Cross1, H Emons2.
Abstract
Serial quantification of BCR-ABL1 mRNA is an important therapeutic indicator in chronic myeloid leukaemia, but there is a substantial variation in results reported by different laboratories. To improve comparability, an internationally accepted plasmid certified reference material (CRM) was developed according to ISO Guide 34:2009. Fragments of BCR-ABL1 (e14a2 mRNA fusion), BCR and GUSB transcripts were amplified and cloned into pUC18 to yield plasmid pIRMM0099. Six different linearised plasmid solutions were produced with the following copy number concentrations, assigned by digital PCR, and expanded uncertainties: 1.08±0.13 × 10(6), 1.08±0.11 × 10(5), 1.03±0.10 × 10(4), 1.02±0.09 × 10(3), 1.04±0.10 × 10(2) and 10.0±1.5 copies/μl. The certification of the material for the number of specific DNA fragments per plasmid, copy number concentration of the plasmid solutions and the assessment of inter-unit heterogeneity and stability were performed according to ISO Guide 35:2006. Two suitability studies performed by 63 BCR-ABL1 testing laboratories demonstrated that this set of 6 plasmid CRMs can help to standardise a number of measured transcripts of e14a2 BCR-ABL1 and three control genes (ABL1, BCR and GUSB). The set of six plasmid CRMs is distributed worldwide by the Institute for Reference Materials and Measurements (Belgium) and its authorised distributors (https://ec.europa.eu/jrc/en/reference-materials/catalogue/; CRM code ERM-AD623a-f).Entities:
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Year: 2014 PMID: 25036192 PMCID: PMC4320294 DOI: 10.1038/leu.2014.217
Source DB: PubMed Journal: Leukemia ISSN: 0887-6924 Impact factor: 11.528
Figure 1Schematic map of the multitarget plasmid pIRMM0099. The arrows represent the inserts from the transcript fragments of BCR, GUSB and BCR–ABL1. The rectangles show the location of the PCR targets BCR–ABL1 and ABL1 (the ABL1 CG is within the BCR–ABL1 fragment) used quantify the copy number concentration of the plasmid. The single restriction site for EcoRV is also shown.
Certified copy number concentrations of double-stranded plasmid DNA and their uncertainties for the six ERM-AD623 dilutions
| u | u | u | u | u | ||
|---|---|---|---|---|---|---|
| ERM-AD623a | 1.08 × 106 | 3.28 | 3.57 | 2.75 | 11.15 | 0.13 × 106 |
| ERM-AD623b | 1.08 × 105 | 3.58 | 2.88 | 2.21 | 10.19 | 0.11 × 105 |
| ERM-AD623c | 1.03 × 104 | 3.01 | 2.59 | 2.81 | 9.73 | 0.10 × 104 |
| ERM-AD623d | 1.02 × 103 | 2.66 | 2.47 | 2.11 | 8.40 | 0.09 × 103 |
| ERM-AD623e | 1.04 × 102 | 3.06 | 2.75 | 2.43 | 9.56 | 0.10 × 102 |
| ERM-AD623f | 10.0 | 4.28 | 4.37 | 3.83 | 14.42 | 1.5 |
Abbreviations: CRM, certified reference material; ubb,rel, relative uncertainity related to potential between-unit heterogeneity of the material; uchar,rel, relative uncertainity related to the charecterisation study; uCRM, expanded uncertainity of the certified value (with k=2); uCRM,rel, relative expanded uncertainity of the certified value (with k=2); ults,rel, relative uncertainity related to potential degradation during long-term storage (24 months at −20 °C).
As the copy number concentrations refer to the copy numbers of double-stranded plasmid, these numbers should be doubled when calibrating quantitative real-time PCR experiments that measure single-stranded cDNA samples.
Figure 2Comparison of measured % BCR-ABL1/ABL1 ratio between laboratory calibrators (Lab) and ERM-AD623 for the cell line dilutions. Data from all centres in the second suitability study that used ABL1 as a control gene are included; median values are indicated.
Figure 3Comparison of measured % BCR-ABL1/ABL1 ratio between laboratory calibrators (Lab) and ERM-AD623 for the aRNA mixtures. Data from all centres in the second suitability study that used ABL1 as a control gene and returned aRNA data are included; median values are indicated.
Comparison of results for the cell line dilutions using local calibrators (Lab) and ERM-AD623
| Level 1 | Lab | 5.732 | 80.8 | 100 |
| Level 2 | Lab | 0.043 | 75.0 | 96.1 |
| Level 3 | Lab | 0.004 | 67.3 | 86.5 |
| Level 1 | ERM-AD623 | 4.636 | 92.3 | 100 |
| Level 2 | ERM-AD623 | 0.034 | 86.5 | 96.1 |
| Level 3 | ERM-AD623 | 0.003 | 80.8 | 94.2 |
Comparison of results for the aRNA mixtures using local calibrators (Lab) and ERM-AD623
| Level 1 | Lab | 0.1 | 72 | 92 |
| Level 2 | Lab | 0.01 | 64 | 94 |
| Level 1 | ERM-AD623 | 0.1 | 80 | 94 |
| Level 2 | ERM-AD623 | 0.01 | 72 | 92 |
Figure 4Reported numbers of BCR–ABL1 and ABL1 transcripts using laboratory-specific methods (which vary with regard to the amount of material analysed), laboratory calibrators (Lab) and ERM-AD623 for cell line dilutions. Data from all centres in the second suitability study that used ABL1 as a control gene are included; median values are indicated. Values for ABL1 are for all three dilutions combined; values for BCR–ABL1 differ between the three levels and are shown separately.
Figure 5Estimates of copy numbers of BCR–ABL1 and ABL1 transcripts using laboratory calibrators and ERM-AD623 for the aRNA dilutions in the second suitability study. Individual laboratory protocols have been taken into account to derive estimate per μl of aRNA. Data from all centres in the second suitability study that used ABL1 as a control gene and returned aRNA data are included; median values are indicated. Values for ABL1 are for both dilutions combined; values for BCR–ABL1 differ between the two levels and are shown separately. Expected values for ABL1 if the lysis, reverse transcription and qPCR were all perfect is 305 500; expected BCR–ABL1 values for levels 1 and 2 are 300 and 30, respectively.