Vet Med - Czech, 2019, 64(1):25-32 | DOI: 10.17221/93/2017-VETMED

Laboratory diagnostics of selected feline respiratory pathogens and their prevalence in the Czech RepublicOriginal Paper

Dana Lobova*,1,2, Vendula Kleinova1, Jarmila Konvalinova3, Petra Cerna1,4, Dobromila Molinkova1,2
1 Faculty of Veterinary Medicine, University of Veterinary and Pharmaceutical Sciences Brno, Brno, Czech Republic
2 CEITEC, University of Veterinary and Pharmaceutical Sciences Brno, Brno, Czech Republic
3 Faculty of Veterinary Hygiene and Ecology, University of Veterinary and Pharmaceutical Sciences Brno, Brno, Czech Republic
4 Vets Now Referral and Emergency Hospital Glasgow, Glasgow, United Kingdom

Respiratory problems in cats have a multifactorial character. Therapy without the detection of pathogen is often ineffective. Our study was therefore focused on the detection of important feline respiratory bacterial pathogens such as Mycoplasma felis, Chlamydia felis and Bordetella bronchiseptica and viral pathogens such as Felid alphaherpesvirus-1 and feline calicivirus. The goal of this study was to map the occurrence of these pathogens in cat populations in the Czech Republic with the aim of introducing rapid and highly sensitive methods into routine diagnostics and to provide consulting services to animal health professionals based on the acquired data. A total of 218 cats were investigated in the study: 69 were outdoor and 149 were indoor cats. Three groups of animals were compared: up to one year of age (60 cats), one to three years of age (68 cats) and more than three years of age (90 cats). Samples were taken from conjunctiva and/or the oropharynx. Samples originated from cats with various forms of respiratory disease or from healthy cats from different parts of the Czech Republic. Real-Time RT-PCR, multiplex Real-Time PCR, nested PCR and sequencing analyses were performed. Outdoor cats were infected more often (84 detected pathogens in 69 cats) than indoor cats (110 detected infections in 149 cats). More than one pathogen was detected in a total of 38 cats, and six cats were infected with more than two pathogens. The difference was statistically significant in the case of co-infections, but not for mono-infections (P < 0.05). Kittens and young adults up to the age of one year were the most common reservoirs of respiratory infections (only 19 cats out of 60 were negative and positive cats often harboured coinfections). The difference in age groups were not statistically significant (P > 0.05). Concerning the site of the sampling, feline calicivirus, M. felis and B. bronchiseptica were detected more often from oropharynx than from conjunctival swabs. M. felis was slightly more common in clinically diseased animals (39.6%) than in healthy ones (26.1%). The obtained results reveal the frequency of individual pathogens and their co-infections in cats kept on the territory of the Czech Republic, data which can be used to make the treatment of respiratory infections and breeding measures more effective. Therefore, the diagnostic methods are now available to veterinary surgeons with the possibility of consultation and discussion of the results.

Keywords: respiratory disease complex; polymerase chain reaction; diagnostics; Mycoplasma felis; Chlamydia felis; Bordetella bronchiseptica; Felid alphaherpesvirus-1; FHV-1; feline calicivirus; FCV

Published: January 31, 2019  Show citation

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Lobova D, Kleinova V, Konvalinova J, Cerna P, Molinkova D. Laboratory diagnostics of selected feline respiratory pathogens and their prevalence in the Czech Republic. Vet Med-Czech. 2019;64(1):25-32. doi: 10.17221/93/2017-VETMED.
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References

  1. Afonso MM, Pinchbeck GL, Smith SL, Daly JM, Gaskell RM, Dawson S, Radford AD (2017): A multi-national European cross-sectional study of feline calicivirus epidemiology, diversity and vaccine cross-reactivity. Vaccine 35, 2753-2760. Go to original source... Go to PubMed...
  2. Cai Y, Fukushi H, Koyasu S, Kuroda E, Yamaguchi T, Hirai K (2002): An etiological investigation of domestic cats with conjunctivitis and upper respiratory tract disease in Japan. Journal of Veterinary and Medical Science 64, 215-219. Go to original source... Go to PubMed...
  3. Di Francesco A, Baldelli R (2002): Feline chlamydiosis in Italy: PCR amplification and DNA analysis of the ompA and groEL-homolog genes. Microbiologica 25, 341-344.
  4. Di Francesco A, Piva S, Baldelli R (2004): Prevalence of Chlamydophila felis by PCR among healthy pet cats in Italy. Microbiologica 27, 199-201.
  5. Di Martino B, Di-Francesco C, Meridiani I, Marsilio F (2007): Etiological investigation of multiple respiratory infections in cats. New Microbiologica 30, 455-461.
  6. Fiorito F, Cantiello A, Granato G, Navas L, Diffidenti C, De Martino L, Maharajan V, Olivieri F, Pagnini U, Iovane G (2016): Clinical improvement in feline herpesvirus 1 infected cats by oral low dose of interleukin-12 plus interferon-gamma. Comparative Immunology Microbiology and Infectious Diseases 48, 41-47. Go to original source... Go to PubMed...
  7. Gruffydd-Jones T, Addie D, Belak S, Boucraut-Baralon C, Egberink H, Frymus T, Hartmann K, Hosie MJ, Lloret A, Lutz H, Marsilio F, Pennisi MG, Radford AD, Thiry E, Truyen U, Horzinek MC (2009): Chlamydophila felis infection. ABCD guidelines on prevention and management. Journal of Feline Medicine and Surgery 11, 605-609. Go to original source... Go to PubMed...
  8. Hartley JC, Stevenson S, Robinson AJ, Littlewood JD, Carder C, Carledge J, Clark C, Ridgway GL (2001): Conjunctivitis due to Chlamydophila felis (Chlamydia psittaci feline pneumonitis agent) acquired from a cat: case report with molecular characterization of isolates from the patient and cat. Journal of Infection 43, 7-11. Go to original source...
  9. Helps CR, Lait P, Tasker S, Harbour DA (2002): Melting curve analysis of feline calicivirus isolates detected by real-time reverse transcription PCR. Journal of Virological Methods 106, 241-244. Go to original source... Go to PubMed...
  10. Helps CR, Lait P, Damhuis A, Björnehammar U, Bolta D, Brovida C, Chabanne L, Egberink H, Ferrand G, Fontbonne A, Pennisi MG, Gruffydd-Jones T, Gunn-Moore D, Hartmann K, Lutz H, Malandain E, Möstl K, Stengel C, Harbour DA, Graat EAM (2005): Factors associated with upper respiratory tract disease caused by feline herpesvirus, feline calicivirus, Chlamydophila felis and Bordetella bronchiseptica in cats: experience from 218 European catteries. Veterinary Record 156, 669-673. Go to original source... Go to PubMed...
  11. Holst BS, Hanas S, Berndtsson LT, Hansson I, Soderlund R, Aspán A, Sjödahl-Essén T, Bölske G, Greko C (2010): Infectious causes for feline upper respiratory tract disease - a case control study. Journal of Feline Medicine and Surgery 12, 783-789. Go to original source... Go to PubMed...
  12. Hoskins JD, Williams J, Roy AF, Peters JC, McDonough P (1998): Isolation and characterisation of Bordetella bronchiseptica from cats in southern Louisiana. Veterinary Immunology and Immunopathology 65, 173-176. Go to original source... Go to PubMed...
  13. Konvalinova J, Kovarikova S, Humpova K, Lobova D, Molinkova D (2016): Feline infectious respiratory tract disease - a review (in Czech). Veterinářství 66, 327-334.
  14. Kuroda-Kitagawa Y, Suzuki-Muramatsu C, Yamaguchi T, Fukushi H, Hirai K (1993): Antigenic analysis of Chlamydia pecorum and mammalian Chlamydia psittaci by use of monoclonal antibodies to the major outer membrane protein and a 56 to 64 kD protein. American Journal of Veterinary Research 54, 709-712.
  15. Lee-Fowler T (2014): Feline respiratory disease. What is the role of Mycoplasma species? Journal of Feline Medicine and Surgery 16, 563-571. Go to original source... Go to PubMed...
  16. Litster A, Wu CC, Leutenegger CM (2015): Detection of feline upper respiratory tract disease pathogens using a commercially available real-time PCR test. The Veterinary Journal 206, 149-153. Go to original source... Go to PubMed...
  17. Maazi N, Jamshidi S, Kayhani P, Momtaz H (2016): Occurrence of Chlamydophila felis, feline herpesvirus 1 and calicivirus in domestic cats of Iran. Iranian Journal of Microbiology 8, 312-315.
  18. McManus CM, Levy JK, Andersen LA, McGorray SP, Leutenegger CM, Gray LK, Hilligas J, Tucker SJ (2014): Prevalence of upper respiratory pathogens in four management models for unowned cats in the Southeast United States. The Veterinary Journal 201, 196-201. Go to original source... Go to PubMed...
  19. Ossiboff RJ, Sheh A, Shotton J, Pesavento PA, Parker JS (2007): Feline caliciviruses (FCVs) isolated from cats with virulent systemic disease possess in vitro phenotypes distinct from those of other FCV isolates. Journal of General Virology 88, 506-517. Go to original source... Go to PubMed...
  20. Polak KC, Levy JK, Crawford PC, Leutenegger CM, Moriello KA (2014): Infectious diseases in large-scale cat hoarding investigations. The Veterinary Journal 201, 189-195. Go to original source... Go to PubMed...
  21. Pudjiatmoko H, Fukuschi Y, Ochai T, Yamaguchi T, Hirai K (1997): Diversity of feline Chlamydia psittaci revealed by random amplification of polymorphic DNA. Veterinary Microbiology 54, 73-83. Go to original source... Go to PubMed...
  22. Radford AD, Coyne KP, Dawson S, Porter CJ, Gaskell RM (2007): Feline calicivirus. Veterinary Research 38, 319-335. Go to original source... Go to PubMed...
  23. Rampazzo A, Appino S, Pregel P, Tarducci A, Zini E, Biolatti B (2003): Prevalence of Chlamydophila felis and feline herpesvirus 1 in cats with conjunctivitis in northern Italy. Journal of Veterinary Internal Medicine 17, 799-807. Go to original source... Go to PubMed...
  24. Reubel GH, Ramos RA, Hickman MA, Rimstad E, Hoffmann DE, Pedersen NC (1993): Detection of active and latent feline herpesvirus 1 infections using the polymerase chain reaction. Archives of Virology 132, 409-420. Go to original source... Go to PubMed...
  25. Schulz C, Hartmann K, Mueller RS, Helps C, Schulz BS (2015): Sampling sites for detection of feline herpesvirus-1, feline calicivirus and Chlamydia felis in cats with feline upper respiratory tract disease. Journal of Feline Medicine and Surgery 17, 1012-1019. Go to original source... Go to PubMed...
  26. Stiles J (2014): Ocular manifestations of feline viral diseases. The Veterinary Journal 201, 166-173. Go to original source... Go to PubMed...
  27. Stiles J, McDermott M, Bigsby D, Willis M, Martin C, Roberts W, Greene C (1997): Use of nested polymerase chain reaction to identify feline herpesvirus in ocular tissue from clinically normal cats and cats with corneal sequestra or conjunctivitis. American Journal of Veterinary Research 58, 338-342.
  28. Sykes JE (2014): Feline respiratory viral infections. In: Sykes JE (ed.): Canine and Feline Infectious Diseases. Saunders. 239-251. Go to original source...
  29. Thomasy SM, Shull O, Outerbridge CA, Lim CC, Freeman KS, Strom AR, Kass PH, Maggs DJ (2016): Oral administration of famciclovir for treatment of spontaneous ocular, respiratory, or dermatologic disease attributed to feline herpesvirus type1: 59 cases (2006-2013). JAVMAJournal of American Veterinary Medicine Association 249, 526-538. Go to original source... Go to PubMed...
  30. Zar JH (1999): Biostatistical Analysis. Prentice-Hall, New Jersey. 663 pp.
  31. Zicola A, Saegerman C, Quatpers D, Viandier J, Thiry E (2009): Feline herpesvirus 1 and feline calicivirus infections in a heterogeneous cat population of a rescure shelter. Journal of Feline Medicine and Surgery 11, 1023-1027. Go to original source... Go to PubMed...

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