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1.
PLoS Negl Trop Dis ; 8(10): e3284, 2014 Oct.
Article in English | MEDLINE | ID: mdl-25356758

ABSTRACT

BACKGROUND: African trypanosomes constrain livestock and human health in Sub-Saharan Africa, and aggravate poverty and hunger of these otherwise largely livestock-keeping communities. To solve this, there is need to develop and use effective and cheap tsetse control methods. To this end, we aimed at determining the smallest proportion of a cattle herd that needs to be sprayed on the legs, bellies and ears (RAP) for effective Human and Animal African Trypanosomiasis (HAT/AAT) control. METHODOLOGY/PRINCIPAL FINDING: Cattle in 20 villages were ear-tagged and injected with two doses of diminazene diaceturate (DA) forty days apart, and randomly allocated to one of five treatment regimens namely; no treatment, 25%, 50%, 75% monthly RAP and every 3 month Albendazole drench. Cattle trypanosome re-infection rate was determined by molecular techniques. ArcMap V10.3 was used to map apparent tsetse density (FTD) from trap catches. The effect of graded RAP on incidence risk ratios and trypanosome prevalence was determined using Poisson and logistic random effect models in R and STATA V12.1 respectively. Incidence was estimated at 9.8/100 years in RAP regimens, significantly lower compared to 25.7/100 years in the non-RAP regimens (incidence rate ratio: 0.37; 95% CI: 0.22-0.65; P<0.001). Likewise, trypanosome prevalence after one year of follow up was significantly lower in RAP animals than in non-RAP animals (4% vs 15%, OR: 0.20, 95% CI: 0.08-0.44; P<0.001). Contrary to our expectation, level of protection did not increase with increasing proportion of animals treated. CONCLUSIONS/SIGNIFICANCE: Reduction in RAP coverage did not significantly affect efficacy of treatment. This is envisaged to improve RAP adaptability to low income livestock keepers but needs further evaluation in different tsetse challenge, HAT/AAT transmission rates and management systems before adopting it for routine tsetse control programs.


Subject(s)
Insecticides/pharmacology , Trypanosomiasis, African/prevention & control , Albendazole/pharmacology , Animals , Cattle , Cattle Diseases/epidemiology , Cattle Diseases/prevention & control , Cattle Diseases/transmission , Diminazene/analogs & derivatives , Diminazene/pharmacology , Female , Humans , Insect Control , Male , Population Density , Trypanosomiasis, African/epidemiology , Trypanosomiasis, African/transmission , Trypanosomiasis, African/veterinary , Uganda
2.
Parasit Vectors ; 7: 432, 2014 Sep 08.
Article in English | MEDLINE | ID: mdl-25199409

ABSTRACT

BACKGROUND: Tick and tsetse-borne diseases (TTBDs) constrain livestock production in tropical and subtropical regions of the world. Of this community of endemic diseases, East coast fever (T. parva) is the most important tick-borne disease (TBD) accounting for 70% of all losses due to TBDS in this region where control efforts target either tsetse or TBDs and seldom both. In those instances where simultaneous pyrethroid insecticide TTBD control is implemented, collateral benefits of tsetse control on TBD control have not been quantified. In the interest of guiding future TTBD control efforts, the effect of restricting pyrethroid insecticides to the legs, belly and ears (RAP) of cattle for tsetse and trypanosomiasis control on T. parva prevalence in crop-livestock production systems in Tororo district, south-eastern Uganda was determined. METHODS: We randomly allocated 16 villages to diminazene diaceturate (DA) and 3 graded RAP (25%, 50% and 75% of village herd sprayed respectively) treatment regimens. All cattle were ear-tagged, treated with diminazene diaceturate (DA) and those in regimens 2-4 received monthly graded RAP. Blood samples taken fourteen days post DA treatment and once three monthly were analysed by molecular techniques for T. parva. RESULTS: In total, 8,975 samples from 3,084 animals were analysed. Prevalence of T. parva varied between 1-3% in different treatment regimens. RAP regimens were associated with slightly lower average risk of infection compared to DA. However, the confidence interval was broad and the result was not statistically significant. There was no evidence of a dose response relationship between graded RAP and T. parva prevalence. These findings are discussed herein with regard to endemic stability development to different TBDs. CONCLUSIONS: We found only a slight effect of RAP on T. parva infection. Since sample size determination was based on trypanosomes incidence, the study was underpowered given the low T. parva prevalence. While the findings need to be confirmed in future studies, the observed slight reduction in the risk of infection with T. parva might not compromise endemic stability.


Subject(s)
Diminazene/analogs & derivatives , Insecticides/pharmacology , Theileriasis/prevention & control , Trypanocidal Agents/pharmacology , Trypanosomiasis, African/veterinary , Animals , Cattle , Diminazene/pharmacology , Endemic Diseases , Female , Insecticides/administration & dosage , Male , Pyrethrins/administration & dosage , Pyrethrins/pharmacology , Theileria parva , Trypanosomiasis, African/prevention & control
3.
Parasit Vectors ; 7: 91, 2014 Mar 03.
Article in English | MEDLINE | ID: mdl-24589227

ABSTRACT

BACKGROUND: Tick-borne diseases (TBDs) present a major economic burden to communities across East Africa. Farmers in East Africa must use acaracides to target ticks and prevent transmission of tick-borne diseases such as anaplasmosis, babesiosis, cowdriosis and theileriosis; the major causes of cattle mortality and morbidity. The costs of controlling East Coast Fever (ECF), caused by Theileria parva, in Uganda are significant and measures taken to control ticks, to be cost-effective, should take into account the burden of disease. The aim of the present work was to estimate the burden presented by T. parva and its spatial distribution in a crop-livestock production system in Eastern Uganda. METHODS: A cross sectional study was carried out to determine the prevalence and spatial distribution of T. parva in Tororo District, Uganda. Blood samples were taken from all cattle (n: 2,658) in 22 randomly selected villages across Tororo District from September to December 2011. Samples were analysed by PCR and T. parva prevalence and spatial distribution determined. RESULTS: The overall prevalence of T. parva was found to be 5.3%. Herd level prevalence ranged from 0% to 21% with majority of the infections located in the North, North-Eastern and South-Eastern parts of Tororo District. No statistically significant differences in risk of infection were found between age classes, sex and cattle breed. CONCLUSIONS: T. parva infection is widely distributed in Tororo District, Uganda. The prevalence and distribution of T. parva is most likely determined by spatial distribution of R. appendiculatus, restricted grazing of calves and preferential tick control targeting draft animals.


Subject(s)
Antibodies, Protozoan/blood , Antigens, Protozoan/blood , Cattle Diseases/epidemiology , Theileria parva/isolation & purification , Theileriasis/epidemiology , Tick-Borne Diseases/veterinary , Agriculture , Animals , Cattle , Cattle Diseases/parasitology , Cross-Sectional Studies , DNA, Protozoan/chemistry , DNA, Protozoan/genetics , Demography , Female , Geography , Livestock , Male , Prevalence , Theileria parva/physiology , Theileriasis/parasitology , Tick-Borne Diseases/epidemiology , Tick-Borne Diseases/parasitology , Uganda/epidemiology
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