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  • 1
    Online Resource
    Online Resource
    University of Illinois Libraries ; 2019
    In:  Online Journal of Public Health Informatics Vol. 11, No. 1 ( 2019-05-30)
    In: Online Journal of Public Health Informatics, University of Illinois Libraries, Vol. 11, No. 1 ( 2019-05-30)
    Abstract: ObjectiveTo detect presence of circulating Rift Valley Fever virus (RVFv) in animals of Western and Central Uganda following its confirmation in humans.To establish and communicate reliable information using the one health platformSignificnce:Although in E. Africa RVF was initially detected and known to be a disease endermic in Kenya, the people in Uganda were still hesitating wether the disease is already in existence. Following its first detection in 2016 in Humans there was need to carry out an investigation in the hot spot areas of the human infection to get the real picture and to inform the policy makers for informed decisions.IntroductionRift Valley fiver is viral zoonotic disease which was investigated and reported in Uganda in 20101. For some time now people are not aware whether the disease was still circulating or emerged in animals reared as a result of the inter country trade by the community of the cattle corridor in Uganda, since the last reports in 19682. The increase in the number of disease outbreaks in some parts of central and western Uganda from 2016 to date and the number of human patients investigated, diagnosed and confirmed with RVF by Ministry Of Health (MOH) under the one health program, has placed the disease to be among the top re-emerging diseases in the country3 & 4 and number 5 of the Multisectoral prioritization of zoonotic diseases in Uganda, 2017 under One Health perspective6.MethodsRift valley Fever was investigated in cattle, goats and sheep of Gomba,Mityana, Kiboga and Kiruhura in Central and Western Uganda. This followed 2 people that had been confirmed with RVF in 20161 Samples were aseptically collected from hot places from 543 victim’s animals including those of the neighbouring areas covering the victims routes of movement plus those areas where people were still sick and where death had reportedly occurred. Samples were then delivered to NADDEC laboratory from where tests were conducted.ResultsSamples were screened using a competition IgG ELISA, then IgM ELISA to capture the recently infected animals. The positive samples from the IgM ELISA were then confirmed using RT-PCR; 169/543 (31%) tested positive to IgG screening ELISA indicating exposure to RVF. The actual infection was found to be 13% (22/169) with IgM ELISA and 3/22 (13.6%) with RT-PCR.ConclusionsZoonotic diseases continue to be a public health burden to the people of Uganda. Considering some people’s behavior of eating the sick and dead animals, has posed a difficult situation to combat the ailment which has resulted in negative socioeconomic impacts, affecting the national policies that range from health security to control of diseases. Uganda has however developed capacity to investigate, test and confirm RVF disease. Since exposure was found in all animal species, detailed active surveillance plan and procedures have been set up to investigate any additional cases in animals to reduce chances of spread to humans and to cub international spread and also to determine the magnitude of exposure.References1 Nabukenya, Investigation and response to Rift Valley Fever and Yellow Fever outbreaks in humans in Uganda, 20162 Nyakarahuka L.prevalence and risk factors of Rift valley in humans and animals from kabale, 20163 Wang LF, Crameri G.Emerging zoonotic viral diseases.Rev Sci Tech Int Epiz.2014;33Institute of Medicine (U.S.), Committee on Achieving Sustainable Global Capacity for surveillance and4 Response to Emerging Diseases of Zoonotic Origin, Keusch G. Sustaining global surveillance and response to emerging zoonotic diseases, 20095 Musa Sekamatte, Vikram K.Multisectoral prioritization of zoonotic diseases in Uganda, 2017, A One Health perspective6 Munyua P, Bitek A, Osoro E, Pieracci EG, Muema J,Mwatondo A,et al, Prioritization of Zoonotic Diseases in Kenya,2015. PLOS ONE. 2016;11:e0161576. http://doi.org/10.1371/journal.pone.0161576 PMID:27557120 
    Type of Medium: Online Resource
    ISSN: 1947-2579
    Language: Unknown
    Publisher: University of Illinois Libraries
    Publication Date: 2019
    detail.hit.zdb_id: 2606835-7
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  • 2
    In: BMC Infectious Diseases, Springer Science and Business Media LLC, Vol. 20, No. 1 ( 2020-12)
    Abstract: Rabies is a deadly preventable viral disease that affects all warm-blooded animals and widespread in many regions including Africa. The disease remains of major public health importance in Uganda. The purpose of this study was to establish Knowledge, Attitude, Practice (KAP) of Rabies in Moyo and Ntoroko districts and to characterize Rabies virus (RABV) strains from seven districts of Uganda with consistent prevalence of rabies. Methods KAP survey data were collected based on animal biting history by interviewing the head of the veterinary departments, the medical centers and selected households from the study sites. Data were obtained from 84 households in Ntoroko and Moyo districts. Thirty-five (35) brain samples were collected from bovine, dogs, goats, foxes, jackals ad sheep between 2011 and 2013. Samples were tested using fluorescent antibody test (FAT), One step RT-PCR (following RNA extraction) and partial RABV N gene was sequenced by Sanger method before phylogenetic and phylogeographic analyses of sequences. Results Scarcity of post-exposure prophylaxis services in the health centers was noted. Poor attitude of wound washing and deficiency of knowledge on how to handle wounds related to dog bites and the significance among household participants lacked. There is a high risk of rabies infection due to a limited dog’s vaccination. Dog biting episodes in humans were of 75.00 and 62.50% in Moyo and Ntoroko districts respectively. Twenty-seven (27) samples tested positive for rabies by FAT and PCR. Ugandan sequences were closely related (97% nucleotide id) to the rabies virus sequences from Tanzania, Rwanda, Burundi, Nigeria, Central African Republic and Sudan with both the “Africa 1A” and “Africa 1B” RABV clades represented. A putative new clade 1D was also detected. Conclusions Rabies remains a public health hazard in Uganda. There is urgent need to establish advocacy programs in both schools and communities to curtail the spread of rabies. Increasing the knowledge regarding wound washing, post-exposure prophylaxis and dogs vaccination would enhance prevention of rabies. A strong collaboration between medical and veterinary sectors under a one health platform is required to ensure sufficient preventative services to the communities.
    Type of Medium: Online Resource
    ISSN: 1471-2334
    Language: English
    Publisher: Springer Science and Business Media LLC
    Publication Date: 2020
    detail.hit.zdb_id: 2041550-3
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  • 3
    In: PLOS Neglected Tropical Diseases, Public Library of Science (PLoS), Vol. 17, No. 5 ( 2023-5-26), p. e0010482-
    Abstract: Uganda has had repeated outbreaks of Rift Valley fever (RVF) since March 2016 when human and livestock cases were reported in Kabale after a long interval. The disease has a complex and poorly described transmission patterns which involves several mosquito vectors and mammalian hosts (including humans). We conducted a national serosurvey in livestock to determine RVF virus (RVFV) seroprevalence, risk factors, and to develop a risk map that could be used to guide risk-based surveillance and control measures. A total of 3,253 animals from 175 herds were sampled. Serum samples collected were screened at the National Animal Disease Diagnostics and Epidemiology Centre (NADDEC) using a competition multispecies anti-RVF IgG ELISA kit. Data obtained were analyzed using a Bayesian model that utilizes integrated nested Laplace approximation (INLA) and stochastic partial differential equation (SPDE) approaches to estimate posterior distributions of model parameters, and account for spatial autocorrelation. Variables considered included animal level factors (age, sex, species) and multiple environmental data including meteorological factors, soil types, and altitude. A risk map was generated by projecting fitted (mean) values, from a final model that had environmental factors onto a spatial grid that covered the entire domain. The overall RVFV seroprevalence was 11.3% (95% confidence interval: 10.2–12.3%). Higher RVFV seroprevalences were observed in older animals compared to the young, and cattle compared to sheep and goats. RVFV seroprevalence was also higher in areas that had (i) lower precipitation seasonality, (ii) haplic planosols, and (iii) lower cattle density. The risk map generated demonstrated that RVF virus was endemic in several regions including those that have not reported clinical outbreaks in the northeastern part of the country. This work has improved our understanding on spatial distribution of RVFV risk in the country as well as the expected burden of the disease in livestock.
    Type of Medium: Online Resource
    ISSN: 1935-2735
    Language: English
    Publisher: Public Library of Science (PLoS)
    Publication Date: 2023
    detail.hit.zdb_id: 2429704-5
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  • 4
    In: Journal of Infection, Elsevier BV, Vol. 85, No. 6 ( 2022-12), p. 693-701
    Type of Medium: Online Resource
    ISSN: 0163-4453
    RVK:
    Language: English
    Publisher: Elsevier BV
    Publication Date: 2022
    detail.hit.zdb_id: 2012883-6
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