| Literature DB >> 28713579 |
Corinne Sailleau1, Cyril Viarouge1, Emmanuel Breard1, Damien Vitour1, Stephan Zientara1.
Abstract
Since the unexpected emergence of BTV-8 in Northern Europe and the incursion of BTV-8 and 1 in France in 2006-2007, molecular diagnosis has considerably evolved. Several real-time RT-PCR (rtRT-PCR) methods have been developed and published, and are currently being used in many countries across Europe for BTV detection and typing. In France, the national reference laboratory (NRL) for orbiviruses develops and validates 'ready-to-use' kits with private companies for viral RNA detection. The regional laboratories network that was set up to deal with a heavy demand for analyses has used these available kits. From 2007, ring tests were organized to monitor the performance of the French laboratories. This study presents the results of 63 regional laboratories in the ring trial organized in 2016. Blood samples were sent to the laboratories. Participants were asked to use the rtRT-PCR methods in place in their laboratory, for detection of all BTV serotypes and specifically BTV-8. The French regional laboratories are able to detect and genotype BTV in affected animals. Despite the use of several methods (i.e. RNA extraction and different commercial rtRT-PCRs), the network is homogeneous. The ring trial demonstrated that the French regional veterinary laboratories have reliable and robust BTV diagnostic tools for BTV genome detection.Entities:
Keywords: Bluetongue; diagnosis; real‐time RT‐PCR; ring trial
Year: 2017 PMID: 28713579 PMCID: PMC5488199 DOI: 10.1002/vms3.63
Source DB: PubMed Journal: Vet Med Sci ISSN: 2053-1095
Panel of blood samples prepared for the ring trial
| Samples | Nature | Pan‐BTV rtRT‐PCR mean CT value (Standard deviation) | BTV‐8 rtRT‐PCR mean CT value (Standard deviation) |
|---|---|---|---|
| 1/2 | Non spiked blood | No CT | No CT |
| 3/4/5 | BTV‐8 spiked blood | 30.4 (0.7) | 31.0 (1) |
| 6 | BTV‐8 spiked blood | 28.7 (0.5) | 28.6 (0.9) |
| 7 | BTV‐8 spiked blood | 32.0 (0.7) | 32.4 (2.3) |
| 8/9 | BTV‐8 spiked blood | 32.7 (0.8) | 32.9 (1.8) |
| 10 | BTV‐1 spiked blood | 29.4 (0.7) | No CT |
rtRT‐PCR results (mean CT values and standard deviation) for each sample, all rtRT‐PCR kits taken together
Commercial rtRT‐PCR kits available for the ring trial
| rtRT‐PCR assays | Commercial kits |
|---|---|
|
Duplex Pan BTV rtRT‐PCR | LSI VetMax Bluetongue Virus NS3 |
| ADIAVET BTV REAL TIME (ADI352) | |
| ID Gene® BlueTongue duplex | |
| Bio‐T kit® BTV all genotypes | |
| Duplex BTV‐8 rtRT‐PCR (detection of BTV‐8 + endogenous gene) | LSI VetMax BTV 8 typing‐IAH |
| ADIAVET BTV TYPE 8 REAL TIME (ADI381) | |
| Triplex Pan BTV rtRT‐PCR + BTV‐8 rtRT‐PCR (detection all serotypes + BTV‐8 + endogenous gene) | ADIAVET BTV ALL + TYPE 8 REAL TIME (ADI401) |
Figure 1rtRT‐PCR kits used by participants.
Figure 2Box plot of real‐time RT‐PCR results of the positive samples generated with all the methods used by the 63 laboratories for BTV detection (a) and for BTV‐8 detection (b). White circles represent the extreme CT values obtained by some laboratories. Asterisks represent the NRL results.
Figure 3Box plot of pan‐BTV real‐time RT‐PCR results of the positive samples depending on the extraction methods used (A: silica membrane, B: magnetic beads).
rtRT‐PCR results for pan‐BTV detection and BTV‐8 detection
|
| Pan BTV rt‐RT‐PCR kits | BTV‐8 rtRT‐PCR kits | ||||||
|---|---|---|---|---|---|---|---|---|
| Samples | CT (mean) | SD | CV | N of values | CT (mean) | SD | CV | N of values |
| 3/4/5 | 29.6 | 1.5 | 5.1 | 189 | 28.5 | 1.5 | 5.2 | 186 |
| 6 | 27.6 | 1.3 | 4.6 | 63 | 26.4 | 1.3 | 4.9 | 62 |
| 7 | 30.8 | 1.6 | 5.2 | 63 | 30,0 | 2.0 | 6.8 | 62 |
| 8/9 | 32.0 | 1.5 | 4.8 | 126 | 31.4 | 1.8 | 5.6 | 123 |
| 10 | 28.2 | 1.7 | 6.1 | 63 | ||||
Mean CT values, standard deviation and coefficient of variation are given for each sample (all method taken together).