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Development of a real-time PCR to detect Demodex canis DNA in different tissue samples

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Abstract

The present study reports the development of a real-time polymerase chain reaction (PCR) to detect Demodex canis DNA on different tissue samples. The technique amplifies a 166 bp of D. canis chitin synthase gene (AB 080667) and it has been successfully tested on hairs extracted with their roots and on formalin-fixed paraffin embedded skin biopsies. The real-time PCR amplified on the hairs of all 14 dogs with a firm diagnosis of demodicosis and consistently failed to amplify on negative controls. Eleven of 12 skin biopsies with a morphologic diagnosis of canine demodicosis were also positive. Sampling hairs on two skin points (lateral face and interdigital skin), D. canis DNA was detected on nine of 51 healthy dogs (17.6%) a much higher percentage than previously reported with microscopic studies. Furthermore, it is foreseen that if the number of samples were increased, the percentage of positive dogs would probably also grow. Moreover, in four of the six dogs with demodicosis, the samples taken from non-lesioned skin were positive. This finding, if confirmed in further studies, suggests that demodicosis is a generalized phenomenon in canine skin, due to proliferation of local mite populations, even though macroscopic lesions only appear in certain areas. The real-time PCR technique to detect D. canis DNA described in this work is a useful tool to advance our understanding of canine demodicosis.

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References

  • Borgo SN, Sattler EC, Hogardt M, Adler K, Plewig G (2009) PCR analysis for Wolbachia in human and canine Demodex mites. Arch Dermatol Res 301:747–752

    Article  CAS  PubMed  Google Scholar 

  • Chee JH, Kwon JK, Cho HS, Cho KO, Lee YJ, El-Aty A, Shin SS (2008) A survey of ectoparasite minfestations in stray dogs of Gwang-Ju city, Republic of Korea. Korean J Parasitol 46:23–27

    Article  PubMed  Google Scholar 

  • Fondati A, De Lucia M, Furiani N, Monaco M, Ordeix L, Scarampella F (2009) Prevalence of Demodex canis-positive healthy dogs at trichsocopic examination. Vet Dermatol 21:146–151

    Article  PubMed  Google Scholar 

  • Forton F, Seys B (1993) Density of Demodex folliculorum in rosacea: a case control study using standardized skin-surface biopsy. Br J Dermatol 128:650–659

    Article  CAS  PubMed  Google Scholar 

  • Gafaar SM (1974) Immunology and allergy of demodectic mange. Vet Clinics North Am 4:125–131

    Google Scholar 

  • Gafaar SM, Smalley HE, Turk RD (1958) The incidence of Demodex species on skins of apparently normal dogs. J Am Vet Med Assoc 133:122–123

    Google Scholar 

  • Greve JH, Gaffar SM (1966) Natural transmission of Demodex canis in dogs. J Am Vet Med assoc 148:1043–1045

    CAS  PubMed  Google Scholar 

  • It V, Barrientos L, López Gappa J, Posik D, Díaz S, Golijow C, Giovambattista (2010) Association of canine juvenile generalized demodicosis with the dog leukocyte antigen system. Tissue Antigens, advanced online publication

  • Mason I, Mason K, Lloyd D (1996) A review of the biology of canine skin with respect to the commensals Staphylococcus intermedius, Demodex canis and Malassezia pachydermatis. Vet Dermatol 7:119–132

    Article  Google Scholar 

  • Müller NA, Zimmermann V, Forster U, Bienz M, Gottstein B, Welle M (2003) PCR-based detection of canine Leishmania infections in formalin-fixed and paraffin-embedded skin biopsies: elaboration of a protocol for quality assessment of the diagnostic amplification reaction. Vet Parasitol 114:223–229

    Article  PubMed  Google Scholar 

  • Rodríguez-Vivas RI, Ortega-Pacheco A, Rosado-Aguilar JA, Bolio GME (2003) Factors affecting the prevalence of mange-mite infestations in stray dogs of Yucatán, Mexico. Vet Parasitol 115:61–65

    Article  PubMed  Google Scholar 

  • Scott DW, Miller WH, Griffin CG (2001) Muller & Kirk’s small animal dermatology. Saunders, Philadelphia

    Google Scholar 

  • Toops E, Blagburn B, Lenaghan S, Kennis R, MacDonald J, Dykstra C (2010) Extraction and characterization of DNA from Demodex canis. Intern J Appl Res Vet Med 8:31–43

    CAS  Google Scholar 

Download references

Acknowledgements

L. Ferrer was supported by a mobility grant from the Ministerio de Ciencia e Innovación (PR2009-0133) of the Spanish Government for a stay at the Université de Montréal while carrying out this study.

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Correspondence to Lluís Ferrer.

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I. Ravera and L. Altet contributed equally to this work.

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Ravera, I., Altet, L., Francino, O. et al. Development of a real-time PCR to detect Demodex canis DNA in different tissue samples. Parasitol Res 108, 305–308 (2011). https://doi.org/10.1007/s00436-010-2062-0

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  • DOI: https://doi.org/10.1007/s00436-010-2062-0

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