Background and Objective: Tick-borne hemoparasitic illnesses pose a serious threat to the well-being and productivity of cattle. This study aimed to investigate the prevalence of tick-borne hemoparasites in Cameroon, with a specific focus on the Noun and Nde Divisions of the West Region. Methodology: A total of 423 cattle from 10 villages in both divisions were included in the study. Blood smears were prepared and subjected to microscopic screening for Babesia and Anaplasma parasites. Results: The prevalence of Anaplasma was found to be 23.4%, while Babesia exhibited a seroprevalence of 17.3%. Samples from Institute of Agricultural Research for Development (IRAD) and Koupa Ngangnou demonstrated significantly higher prevalence rates, potentially influenced by climate variations affecting tick populations. Additionally, 17.3% of the animals exhibited low hematocrit levels, indicative of anemia. No significant associations were observed between the presence of hemoparasite infection and cattle characteristics. Conclusion: This study provides fundamental data on the extensive distribution and impact of tick-borne hemoparasites in a significant cattle-producing region of Cameroon.
Lindblom, A., Wallménius, K., Nordberg, M., Forsberg, P., Eliasson, I., Påhlson, C., et al. (2012) Seroreactivity for Spotted Fever Rickettsiae and Co-Infections with Other Tick-Borne Agents among Habitants in Central and Southern Sweden. European Journal of Clinical Microbiology & Infectious Diseases, 32, 317-323. https://doi.org/10.1007/s10096-012-1742-3
[3]
Abanda, B., Paguem, A., Abdoulmoumini, M., Kingsley, M.T., Renz, A. and Eisenbarth, A. (2019) Molecular Identification and Prevalence of Tick-Borne Pathogens in Zebu and Taurine Cattle in North Cameroon. Parasites & Vectors, 12, Article No. 448. https://doi.org/10.1186/s13071-019-3699-x
[4]
Kasozi, K.I., Matovu, E., Tayebwa, D.S., Natuhwera, J., Mugezi, I. and Mahero, M. (2014) Epidemiology of Increasing Hemo-Parasite Burden in Ugandan Cattle. Open Journal of Veterinary Medicine, 4, 220-231. https://doi.org/10.4236/ojvm.2014.410026
[5]
Atsuwe, T.S., Azua, E.T., Obisike, V.U. and Imandeh, G.N. (2019) Comparative Study on Tick-Borne Haemoparaites of Cattle and Goats Slaughtered in Some Abattoirs within Makurdi, Nigeria. Journal of Applied Life Sciences International, 19, 1-6. https://doi.org/10.9734/jalsi/2018/46280
[6]
Byaruhanga, C., Collins, N.E., Knobel, D.L., Khumalo, Z.T.H., Chaisi, M.E. and Oosthuizen, M.C. (2018) Molecular Detection and Phylogenetic Analysis of Anaplasma Marginale and Anaplasma Centrale amongst Transhumant Cattle in North-Eastern Uganda. Ticks and Tick-Borne Diseases, 9, 580-588. https://doi.org/10.1016/j.ttbdis.2018.01.012
[7]
Silatsa, B.A., Kuiate, J., Njiokou, F., Simo, G., Feussom, J.K., Tunrayo, A., et al. (2019) A Countrywide Molecular Survey Leads to a Seminal Identification of the Invasive Cattle Tick Rhipicephalus (Boophilus) Microplus in Cameroon, a Decade after It Was Reported in Cote D’ivoire. Ticks and Tick-Borne Diseases, 10, 585-593. https://doi.org/10.1016/j.ttbdis.2019.02.002
[8]
Abdullah, D., Ali, M., Omer, S., Fadunsin, S., Ali, F. and Gimba, F. (2019) Prevalence and Climatic Influence on Hemoparasites of Cattle and Sheep in Mosul, Iraq. Journal of Advanced Veterinary and Animal Research, 6, 492-498. https://doi.org/10.5455/javar.2019.f373
[9]
Safiou, B.A., Abel, B., Hassane, A., Marc, N.A., Seacute bastien, Z., et al. (2016) Acaricide Resistance of Rhipicephalus microplus Ticks in Benin. African Journal of Agricultural Research, 11, 1199-1208. https://doi.org/10.5897/ajar2015.10619
[10]
Ngnindji-Youdje, Y., Diarra, A.Z., Lontsi-Demano, M., Tchuinkam, T. and Parola, P. (2022) Detection of Tick-Borne Pathogens in Ticks from Cattle in Western Highlands of Cameroon. Microorganisms, 10, Article No. 1957. https://doi.org/10.3390/microorganisms10101957
[11]
Feldman, B.F., Zinkl, J.G., Jain, N.C. and Schalm, O.W. (2000) Schalm’s Veterinary Hematology. 5th Edition, Lippincott Williams & Wilkins.
[12]
Bakheit, M.A. and Latif, A.A. (2002) The Innate Resistance of Kenana Cattle to Tropical Theileriosis (Theileriaannulata Infection) in the Sudan. Annals of the New York Academy of Sciences, 969, 159-163. https://doi.org/10.1111/j.1749-6632.2002.tb04370.x
[13]
Kernif, T., Djerbouh, A., Mediannikov, O., Ayach, B., Rolain, J., Raoult, D., et al. (2012) Rickettsia Africae in Hyalommadromedarii Ticks from Sub-Saharan Algeria. Ticks and Tick-Borne Diseases, 3, 377-379. https://doi.org/10.1016/j.ttbdis.2012.10.013
[14]
Franke, J., Fritzsch, J., Tomaso, H., Straube, E., Dorn, W. and Hildebrandt, A. (2010) Coexistence of Pathogens in Host-Seeking and Feeding Ticks within a Single Natural Habitat in Central Germany. Applied and Environmental Microbiology, 76, 6829-6836. https://doi.org/10.1128/aem.01630-10
[15]
L’Hostis, M. and Seegers, H. (2002) Tick-Borne Parasitic Diseases in Cattle: Current Knowledge and Prospective Risk Analysis Related to the Ongoing Evolution in French Cattle Farming Systems. Veterinary Research, 33, 599-611. https://doi.org/10.1051/vetres:2002041
[16]
Bonilla-Aldana, D.K., Gutiérrez-Grajales, E.J., Osorio-Navia, D., Chacón-Peña, M., Trejos-Mendoza, A.E., Pérez-Vargas, S., et al. (2022) Haematological Alterations Associated with Selected Vector-Borne Infections and Exposure in Dogs from Pereira, Risaralda, Colombia. Animals, 12, Article No. 3460. https://doi.org/10.3390/ani12243460
[17]
Ganzinelli, S., Rodriguez, A., Schnittger, L. and Florin-Christensen, M. (2017) Babesia in Domestic Ruminants. In: Florin-Christensen, M. and Schnittger, L., Eds., Parasitic Protozoa of Farm Animals and Pets, Springer International Publishing, 215-239. https://doi.org/10.1007/978-3-319-70132-5_9
[18]
Rahali, T., Sahibi, H., Sadak, A., Ait Hamou, S., Losson, B., Goff, W.L., et al. (2015) Séroprévalence et facteurs de risque des hémoparasitoses (theilériose, babésiose et anaplasmose) chez les bovins dans quatre grandes régions d’élevage du Maroc. Revue d’élevage et de médecinevétérinaire des pays tropicaux, 67, 235-240. https://doi.org/10.19182/remvt.20566
[19]
Dumic, I. and Severnini, E. (2018) “Ticking Bomb”: The Impact of Climate Change on the Incidence of Lyme Disease. Canadian Journal of Infectious Diseases and Medical Microbiology, 2018, Article ID: 5719081. https://doi.org/10.1155/2018/5719081
[20]
Randolph, S.E. (2004) Tick Ecology: Processes and Patterns behind the Epidemiological Risk Posed by Ixodid Ticks as Vectors. Parasitology, 129, S37-S65. https://doi.org/10.1017/s0031182004004925