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2008 | 52 | 3 |

Tytuł artykułu

Comparison of real-time PCR and heminested RT-PCR methods in the detection of rabies virus infection in bats and terrestrial animals

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The aim of the paper was to compare the real-time PCR with the heminested RT-PCR method, both applied for the detection of nucleoprotein gene of rabies viruses in bats and terrestrial animals. The study involved 32 rabies virus isolates collected from bats and terrestrial animals coming from different regions of Poland. For both methods, the sensitivities related to TCID₅₀/mL of CVS virus were estimated. The comparison of the methods revealed that the TaqMan PCR was 10-fold more sensitive than the heminested RT-PCR and the detection of rabies virus by this method was possible from 0.1 TCID₅₀/mL on up. The use of the heminested RT-PCR allowed for detection of rabies virus from 1 TCID₅₀/mL on up. Next, the examination of 32 archive samples using both methods revealed 23 positive samples and nine negative samples. The agreement between the results obtained by the methods was 100%. It confirms using the real-time PCR and heminested RT-PCR in laboratory diagnosis of rabies in terrestrial animals and bats. However, the real-time PCR does not require visualisation of the amplification product in agarose gel and the results are observed during the run of the test, which makes the method more rapid than the heminested RT-PCR. Additionally, it is done in a single closed tube and does not require multiple transfer of materials like at the heminested RT-PCR, thus making the virus detection faster and minimising the opportunity for cross-contamination.

Wydawca

-

Rocznik

Tom

52

Numer

3

Opis fizyczny

p.313-318,fig.,ref.

Twórcy

autor
  • National Veterinary Research Institute, 24-100 Pulawy, Poland
autor
autor

Bibliografia

  • 1. Black E.M., Lowings J.P., Smith J., Heaton P.R., McElhimney L.M.: A rapid RT-PCR methods to diffetentiate six established genotypes of rabies and rabies-related viruses using TaqMan technology. J Virol Methods 2002, 105, 25-35.
  • 2. Bourhy H., Kissi B., Audry L., Smreczak M., Sadkowska-Todys M., Kulonen K., Tordo N., Żmudziński J.F., Holmes E.C.: Ecology and evolution of rabies virus in Europe. J Gen Virol 1999, 80, 2545-2557.
  • 3. Bourhy H., Kissi B., Tordo N.: Molecular diversity of the lyssavirus genus. Virology 1993, 194, 70-81.
  • 4. Crepin P., Audry L., Rotivel Y., Gacoin A., Caroff C., Bourhy H.: Intravitam diagnosis of human rabies by PCR using saliva and cerebrospinal fluid. J Clin Microbiol 1998, 36, 1117-1121.
  • 5. David D., Yakobson B., Rotenberg D., Dveres N., Davidson I., Stram T.: Rabies virus detection by RT-PCR in decomposed naturally infected brains. Vet Microbiol 2008, 87, 111-118.
  • 6. Davis P.L., Holmes E.C., Larrous F., Van der Poel W.H.M., Tjørnehøj K., Alonso W.J., Bourhy H.: Phylogeography, population dynamics, and molecular evolution of European bat lyssaviruses. J Virol 2005, 79, 10487-10497.
  • 7. Hanlon C.A., Kuzmin I.V., Blanton J.D., Weldon W.C., Manangan J.S., Rupprecht C.E.: Efficacy of rabies biologies against new lyssaviruses from Eurasia. Virus Res 2005, 111, 44-54.
  • 8. Harris S.L., Brookes S.M., Jones G., Hutson A.M., Racey P.A., Aegerter J., Smith G.C., McElhinney L.M., Fooks A.R.: European bat lyssaviruses: distribution, prevalence and implications for conservation. Biol Conserv 2006, 131, 193-210.
  • 9. Heaton P.R., Johnstone P., McElhinney L.M., Cowley R., O'Sullivan E., Whitby J.E.: Heminested PCR assay for detection of six genotypes of rabies and rabies-related viruses. J Clin Microbiol 1997, 35, 2762-2766.
  • 10. Hughes G.J., Smith J.S., Hanlon C.A., Rupprecht C.E.: Evaluation of a TaqMan PCR assay to detect rabies virus RNA: influence of sequence variation and application to quantification of viral loads. J Clin Microbiol 2004, 42, 299-306.
  • 11. Nagaraj T., Vasanth J.P., Desai A., Kamat A., Madhusudan S.N., Ravi V.: Ante mortem diagnosis of human rabies using saliva samples: comparison of real time and conventional RT-PCR techniques. J Clin Microbiol 2006, 36, 17-23.
  • 12. OIE, Manual of Diagnostic Tests and Vaccines for Terrestrial Animals. Paris, 2004.
  • 13. Picard-Meyer E., Bruyére V., Barrat J., Tissot E., Barrat M.J., Cliquet F.: Development of a hemi-nested RT-PCR method for the specific determination of European bat Lyssavirus 1. Comparison with other rabies diagnostic methods. Vaccine 2004, 22, 1921-1929.
  • 14. Smreczak M., Orłowska A., Trębas P., Żmudziński J. F.: Application of heminested RT-PCR to the detection of EBLV1 and classical rabies virus infections in bats and terrestrial animals. Bull Vet Inst Pulawy 2008, 52, 15-18.
  • 15. Smreczak M., Trębas P., Żmudziński J. F.: Rabies in Poland in 2006. Medycyna Wet 2008, 64, 68-71.
  • 16. World Health Organization. WHO Expert Committee on Rabies, Technical Report Series. Eight Report, No. 824. Geneva, WHO, 1992.
  • 17. Wakeley P.R., Johnson N., McElhinney L.M., Marston D., Sawyer J., Fooks A.R.: Development of a real-time, TaqMan reverse transcription-PCR assay for detection and differentiation of Lyssavirus genotypes 1, 5, and 6. J. Clin Microbiol 2005, 43, 2786-2792.
  • 18. Wakeley P.R., Johnson N., McElhinney L.M., Marston D., Sawyer J., Fooks A.R.: Development of a real-time, differential, RT-PCR TaqMan assay for Lyssavirus genotypes 1, 5, and 6. Dev Biol (Basel) 2006, 126, 227- 236.
  • 19. Vázquez-Morón S., Avellón A., Echevarría J.E.: RT- PCR for detection of all seven genotypes of Lyssavirus genus. J Virol Methods 2006, 135, 281-287.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-8ab736d6-fe4e-41f1-8dbd-f3f0c308dc62
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