Seroprevalence and associated risk factors for Trypanosoma evansi infection in equine in North of Egypt

被引:0
作者
Shoraba, M. [1 ]
Shoulah, S. A. [1 ]
Arnaout, F. [1 ]
Selim, A. [1 ]
机构
[1] Benha Univ, Fac Vet Med, Dept Anim Med Infect Dis, Toukh 13736, Egypt
来源
JOURNAL OF THE HELLENIC VETERINARY MEDICAL SOCIETY | 2024年 / 75卷 / 03期
关键词
T; evansi; Card agglutination test; venereal diseases; risk factors; MOLECULAR SURVEY; HORSES; PREVALENCE; PUNJAB; CAMELS;
D O I
10.12681/jhvms.36449
中图分类号
S85 [动物医学(兽医学)];
学科分类号
0906 ;
摘要
This study determined the seroprevalence of Trypanosoma evansi infection and its associated risk factors in 200 equines across four Egyptian governorates based on CATT/T. evansi. Serological testing revealed T. evansi antibodies in 34.5% of the examined animals, exhibiting notable discrepancies among different governorates. Dakahlia exhibited the highest seroprevalence at 42.4%, while the lowest seroprevalence rate (12.5%) was reported in Gharbia. No significant differences were observed in seroprevalence among age groups or equine species. The multivariate regression analysis model identified pivotal risk factors, wherein the presence of flies increasing infection odds threefold and animals lacking routine insecticide treatment having four times higher odds of infection. Equines in poor health condition displayed double the odds of infection. Surprisingly, a history of venereal disease increased the odds of T. evansi infection. Notably, there were no substantial differences in infection rates based on the disposal of used syringes or prior mange history. These findings provide essential insights into the transmission patterns of T. evansi. Gaining a comprehensive understanding of these identified risk factors is crucial for developing effective methods to reduce the prevalence of T. evansi in populations of equids.
引用
收藏
页码:8065 / 8072
页数:9
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共 47 条
  • [1] Abera B.H., Trypanosoma evansi in Northern Ethiopia: epidemiology, diversity and alternative diagnostics, (2016)
  • [2] Algehani A.M.G., Jaber F.A., Khan A., Alsulami M.N., Review on trypanosomiasis and their prevalence in some country on the Red Sea, Braz J Biol, 83, (2021)
  • [3] Aregawi W.G., Agga G.E., Abdi R.D., Buscher P., Systematic review and meta-analysis on the global distribution, host range, and prevalence of Trypanosoma evansi, Parasit Vectors, 12, (2019)
  • [4] Baldacchino F., Desquesnes M., Mihok S., Foil L.D., Duvallet G., Jittapalapong S., Tabanids: Neglected subjects of research, but important vectors of disease agents!, Infection, Genetics and Evolution, 28, pp. 596-615, (2014)
  • [5] Benfodil K., Ansel S., Mohamed-Cherif A., Ait-Oudhia K., Prevalence of Trypanosoma evansi in horses (Equus caballus) and donkeys (Equus asinus) in El-Bayadh district, southwestern Algeria, Journal of the Hellenic Veterinary Medical Society, 70, pp. 1631-1638, (2019)
  • [6] Berlin D., Nasereddin A., Azmi K., Ereqat S., Abdeen Z., Eyal O., Baneth G., Prevalence of Trypanosoma evansi in horses in Israel evaluated by serology and reverse dot blot, Res Vet Sci, 93, pp. 1225-1230, (2012)
  • [7] Buscher P., Gonzatti M.I., Hebert L., Inoue N., Pascucci I., Schnaufer A., Suganuma K., Touratier L., Van Reet N., Equine trypanosomosis: enigmas and diagnostic challenges, Parasit Vectors, 12, (2019)
  • [8] Davila A.M., Silva R.A., Animal trypanosomiasis in South America, Current status, partnership, and information technology, Ann N Y Acad Sci, 916, pp. 199-212, (2000)
  • [9] de Aluja A.S., The welfare of working equids in Mexico, Applied Animal Behaviour Science, 59, pp. 19-29, (1998)
  • [10] Desquesnes M., Gonzatti M., Sazmand A., Thevenon S., Bossard G., Boulange A., Gimonneau G., Truc P., Herder S., Ravel S., Sereno D., Jamonneau V., Jittapalapong S., Jacquiet P., Solano P., Berthier D., A review on the diagnosis of animal trypanosomoses, Parasit Vectors, 15, (2022)