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Role of the Domestic Dog As a Reservoir Host of Leishmania Donovani in Eastern Sudan

Overview
Journal Parasit Vectors
Publisher Biomed Central
Date 2009 Jun 19
PMID 19534802
Citations 25
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Abstract

Background: The study aims to determine the role of domestic dogs in transmission of visceral leishmaniasis in eastern Sudan. A cross-sectional survey was conducted in 10 villages along the River Rahad in eastern Sudan to elucidate the role of domestic dogs (Canis familiaris, Linnaeus, 1758) as a reservoir host of Leishmania donovani. In this study, 87 dogs were screened for infection by Leishmania donovani. Blood and lymph node samples were taken from 87 and 33 dogs respectively and subsequently screened by the Polymerase Chain Reaction (PCR) and Direct Agglutination Test (DAT) test. Additional lymph node smears were processed for microscopy and parasite culture. Host preference of the visceral leishmaniasis (VL) vector in the area, Phlebotomus orientalis, and other sandflies for the Nile rat (Arvicanthis niloticus, E. Geoffrey, 1803), the genet (Genetta genetta, Linnaeus, 1758), the mongoose (Herpeistes ichneumon, Linnaeus, 1758), and the domestic dog were determined by counting numbers of sand flies attracted to CDC traps that were baited by these animals.

Results: DAT on blood samples detected anti-Leishmania antibodies in 6 samples (6.9%). Two out of 87 (2.3%) blood samples tested were PCR positive, giving an amplification product of 560 bp. The two positive samples by PCR were also positive by DAT. However, none of the 33 lymph nodes aspirates were Leishmania positive when screened by microscopy, culture and genus-specific PCR. The dog-baited trap significantly attracted the highest number of P. orientalis and sand fly species (P < 0.001). This was followed by the Egyptian mongoose baited trap and less frequently by the genet baited trap.

Conclusion: It is concluded that the results obtained from host attraction studies indicate that dog is more attractive for P. orientalis than Egyptian mongoose, common genet and Nile rat.

Citing Articles

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Infection of in Sand Flies at Different Microhabitats of a Kala-Azar Endemic Village in Eastern Sudan.

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Gebremedhin E, Weya W, Dima C, Zewde D, Presti V, Vitale M Vet Med Sci. 2022; 8(6):2319-2328.

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References
1.
Baneth G, Koutinas A, Solano-Gallego L, Bourdeau P, Ferrer L . Canine leishmaniosis - new concepts and insights on an expanding zoonosis: part one. Trends Parasitol. 2008; 24(7):324-30. DOI: 10.1016/j.pt.2008.04.001. View

2.
Zijlstra E, Osman O, Hofland H, Oskam L, Ghalib H, El-Hassan A . The direct agglutination test for diagnosis of visceral leishmaniasis under field conditions in Sudan: comparison of aqueous and freeze-dried antigens. Trans R Soc Trop Med Hyg. 1998; 91(6):671-3. DOI: 10.1016/s0035-9203(97)90518-6. View

3.
MINTER D, WIJERS D, HEISCH R, MANSON-BAHR P . Phlebotomus martini--a probable vector of kala-azar in Kenya. Br Med J. 1962; 2(5308):835. PMC: 1926278. DOI: 10.1136/bmj.2.5308.835. View

4.
Elnaiem D, Schorscher J, Bendall A, Obsomer V, Osman M, Mekkawi A . Risk mapping of visceral leishmaniasis: the role of local variation in rainfall and altitude on the presence and incidence of kala-azar in eastern Sudan. Am J Trop Med Hyg. 2003; 68(1):10-7. View

5.
Kirk R . Studies in leishmaniasis in the Anglo-Egyptian Sudan. XII. Attempts to find a reservoir host. Trans R Soc Trop Med Hyg. 1956; 50(2):169-77. DOI: 10.1016/0035-9203(56)90079-7. View