Your browser doesn't support javascript.
loading
Mostrar: 20 | 50 | 100
Resultados 1 - 9 de 9
Filtrar
1.
Prev Vet Med ; 185: 105197, 2020 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-33186881

RESUMO

Middle East Respiratory Syndrome Coronavirus (MERS-CoV) is an emerging viral disease and dromedary camels are known to be the source of human spill over events. A cross-sectional epidemiological surveillance study was carried out in Kenya in 2017 to, 1) estimate MERS-CoV antibody seropositivity in the camel-dense counties of Turkana, Marsabit, Isiolo, Laikipia and Nakuru to identify, and 2) determine the risk factors associated with seropositivity in camels. Blood samples were collected from a total of 1421 camels selected using a multi-stage sampling method. Data were also collected from camel owners or herders using a pre-tested structured questionnaire. The sera from camel samples were tested for the presence of circulating antibodies to MERS-CoV using the anti-MERS-CoV IgG ELISA test. Univariate and multivariable statistical analysis were used to investigate factors potentially associated with MERS-CoV seropositivity in camels. The overall seropositivity in camel sera was 62.9 %, with the highest seropositivity recorded in Isiolo County (77.7 %), and the lowest seropositivity recorded in Nakuru County (14.0 %). When risk factors for seropositivity were assessed, the "Type of camel production system" {(aOR = 5.40(95 %CI: 1.67-17.49)}, "Age between 1-2 years, 2-3 years and above 3 years" {(aOR = 1.64 (95 %CI: 1.04-2.59}", {(aOR = 3.27 (95 %CI: 3.66-5.61)}" and {(aOR = 6.12 (95 %CI: 4.04-9.30)} respectively and "Sex of camels" {(aOR = 1.75 (95 %CI: 1.27-2.41)} were identified as significant predictors of MERS-CoV seropositivity. Our studies indicate a high level of seropositivity to MERS-CoV in camels in the counties surveyed, and highlights the important risk factors associated with MERS-CoV seropositivity in camels. Given that MERS-CoV is a zoonosis, and Kenya possesses the fourth largest camel population in Africa, these findings are important to inform the development of efficient and risk-based prevention and mitigation strategies against MERS-CoV transmission to humans.


Assuntos
Camelus/virologia , Infecções por Coronavirus/veterinária , Coronavírus da Síndrome Respiratória do Oriente Médio/isolamento & purificação , Animais , Anticorpos Antivirais/sangue , Camelus/sangue , Camelus/imunologia , Infecções por Coronavirus/epidemiologia , Infecções por Coronavirus/virologia , Estudos Transversais , Quênia/epidemiologia , Coronavírus da Síndrome Respiratória do Oriente Médio/imunologia , Fatores de Risco , Inquéritos e Questionários
3.
PLoS Negl Trop Dis ; 12(4): e0006353, 2018 04.
Artigo em Inglês | MEDLINE | ID: mdl-29698487

RESUMO

BACKGROUND: In mid-2015, the United States' Pandemic Prediction and Forecasting Science and Technical Working Group of the National Science and Technology Council, Food and Agriculture Organization Emergency Prevention Systems, and Kenya Meteorological Department issued an alert predicting a high possibility of El-Niño rainfall and Rift Valley Fever (RVF) epidemic in Eastern Africa. METHODOLOGY/PRINCIPAL FINDINGS: In response to the alert, the Kenya Directorate of Veterinary Services (KDVS) carried out an enhanced syndromic surveillance system between November 2015 and February 2016, targeting 22 RVF high-risk counties in the country as identified previously through risk mapping. The surveillance collected data on RVF-associated syndromes in cattle, sheep, goats, and camels from >1100 farmers through 66 surveillance officers. During the 14-week surveillance period, the KDVS received 10,958 reports from participating farmers and surveillance officers, of which 362 (3.3%) had at least one syndrome. The reported syndromes included 196 (54.1%) deaths in young livestock, 133 (36.7%) abortions, and 33 (9.1%) hemorrhagic diseases, with most occurring in November and December, the period of heaviest rainfall. Of the 69 herds that met the suspect RVF herd definition (abortion in flooded area), 24 (34.8%) were defined as probable (abortions, mortalities in the young ones, and/or hemorrhagic signs) but none were confirmed. CONCLUSION/SIGNIFICANCE: This surveillance activity served as an early warning system that could detect RVF disease in animals before spillover to humans. It was also an excellent pilot for designing and implementing syndromic surveillance in animals in the country, which is now being rolled out using a mobile phone-based data reporting technology as part of the global health security system.


Assuntos
Doenças dos Animais/epidemiologia , Surtos de Doenças/veterinária , Gado/virologia , Febre do Vale de Rift/epidemiologia , Doenças dos Animais/virologia , Animais , El Niño Oscilação Sul , Epidemias , Quênia/epidemiologia , Chuva , Vírus da Febre do Vale do Rift , Vigilância de Evento Sentinela
4.
PLoS Negl Trop Dis ; 9(3): e0003550, 2015 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-25756501

RESUMO

BACKGROUND: Although livestock vaccination is effective in preventing Rift Valley fever (RVF) epidemics, there are concerns about safety and effectiveness of the only commercially available RVF Smithburn vaccine. We conducted a randomized controlled field trial to evaluate the immunogenicity and safety of the new RVF Clone 13 vaccine, recently registered in South Africa. METHODS: In a blinded randomized controlled field trial, 404 animals (85 cattle, 168 sheep, and 151 goats) in three farms in Kenya were divided into three groups. Group A included males and non-pregnant females that were randomized and assigned to two groups; one vaccinated with RVF Clone 13 and the other given placebo. Groups B included animals in 1st half of pregnancy, and group C animals in 2nd half of pregnancy, which were also randomized and either vaccinated and given placebo. Animals were monitored for one year and virus antibodies titers assessed on days 14, 28, 56, 183 and 365. RESULTS: In vaccinated goats (N = 72), 72% developed anti-RVF virus IgM antibodies and 97% neutralizing IgG antibodies. In vaccinated sheep (N = 77), 84% developed IgM and 91% neutralizing IgG antibodies. Vaccinated cattle (N = 42) did not develop IgM antibodies but 67% developed neutralizing IgG antibodies. At day 14 post-vaccination, the odds of being seropositive for IgG in the vaccine group was 3.6 (95% CI, 1.5 - 9.2) in cattle, 90.0 (95% CI, 25.1 - 579.2) in goats, and 40.0 (95% CI, 16.5 - 110.5) in sheep. Abortion was observed in one vaccinated goat but histopathologic analysis did not indicate RVF virus infection. There was no evidence of teratogenicity in vaccinated or placebo animals. CONCLUSIONS: The results suggest RVF Clone 13 vaccine is safe to use and has high (>90%) immunogenicity in sheep and goats but moderate (> 65%) immunogenicity in cattle.


Assuntos
Vírus da Febre do Vale do Rift/imunologia , Vacinas Virais/imunologia , Animais , Anticorpos Neutralizantes/sangue , Anticorpos Antivirais/sangue , Bovinos , Feminino , Cabras , Quênia , Gado , Masculino , Ovinos , África do Sul , Vacinas Virais/efeitos adversos
5.
Pan Afr Med J ; 19: 10, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-25815092

RESUMO

INTRODUCTION: Rabies is a fatal viral infection, resulting in >55,000 deaths globally each year. In August 2011, a young orphaned zebra at a Kenyan safari lodge acquired rabies and potentially exposed >150 tourists and local staff. An investigation was initiated to determine exposures among the local staff, and to describe animal bite surveillance in the affected district. METHODS: We interviewed lodge staff on circumstances surrounding the zebra's illness and assessed their exposure status. We reviewed animal bite report forms from the outpatient department at the district hospital. RESULTS: The zebra was reported bitten by a dog on 31(st) July 2011, became ill on 23(rd)August, and died three days later. There were 22 employees working at the lodge during that time. Six (27%) had high exposure due to contact with saliva (bottle feeding, veterinary care) and received four doses of rabies vaccine and one of immune-globulin, and 16 (73%) had low exposure due to casual contact and received only four doses of rabies vaccine. From January 2010 to September 2011, 118 cases of animal bites were reported in the district; 67 (57%) occurred among males, 65 (57%) in children <15 years old, and 61 (52%) were inflicted in a lower extremity. Domestic and stray dogs accounted for 98% of reported bites. CONCLUSION: Dog bites remains the main source of rabies exposure in the district, but exposure can result from wildlife. This highlights the importance of a one health approach with strong communication between wildlife, veterinary, and human health sectors to improve rabies prevention and control.


Assuntos
Mordeduras e Picadas/epidemiologia , Vacina Antirrábica/administração & dosagem , Raiva/prevenção & controle , Adolescente , Adulto , Idoso , Idoso de 80 Anos ou mais , Animais , Criança , Pré-Escolar , Cães , Equidae , Feminino , Humanos , Lactente , Quênia/epidemiologia , Masculino , Pessoa de Meia-Idade , Raiva/transmissão , Estudos Retrospectivos , Adulto Jovem
6.
Influenza Other Respir Viruses ; 7(2): 113-9, 2013 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-22515746

RESUMO

BACKGROUND: Surveillance for influenza viruses within live bird markets (LBMs) has been recognized as an effective tool for detecting circulating avian influenza viruses (AIVs). In Sub-Saharan Africa, limited data exist on AIVs in animal hosts, and in Kenya the presence of influenza virus in animal hosts has not been described. OBJECTIVES: This surveillance project aimed to detect influenza A virus in poultry traded in five LBMs in Kenya. METHODS: We visited each market monthly and collected oropharyngeal and cloacal specimens from poultry and environmental specimens for virological testing for influenza A by real time RT-PCR. On each visit, we collected information on the number and types of birds in each market, health status of the birds, and market practices. RESULTS: During March 24, 2009-February 28, 2011, we collected 5221 cloacal and oropharyngeal swabs. Of the 5199 (99·6%) specimens tested, influenza A virus was detected in 42 (0·8%), including 35/4166 (0·8%) specimens from chickens, 3/381 (0·8%) from turkeys, and 4/335 (1·2%) from geese. None of the 317 duck specimens were positive. Influenza was more commonly detected in oropharyngeal [33 (1·3%)] than in cloacal [9 (0·4%)] specimens. None of the 485 environmental specimens were positive. Virus was detected in all five markets during most (14/22) of the months. Ducks and geese were kept longer at the market (median 30 days) than chickens (median 2days). CONCLUSIONS: Influenza A was detected in a small percentage of poultry traded in LBMs in Kenya. Efforts should be made to promote practices that could limit the maintenance and transmission of AIVs in LBMs.


Assuntos
Vírus da Influenza A/isolamento & purificação , Influenza Aviária/epidemiologia , Animais , Cloaca/virologia , Microbiologia Ambiental , Humanos , Influenza Aviária/virologia , Quênia/epidemiologia , Orofaringe/virologia , Aves Domésticas , Prevalência , Reação em Cadeia da Polimerase em Tempo Real , Reação em Cadeia da Polimerase Via Transcriptase Reversa
7.
Am J Trop Med Hyg ; 83(2 Suppl): 58-64, 2010 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-20682907

RESUMO

We analyzed the extent of livestock involvement in the latest Rift Valley fever (RVF) outbreak in Kenya that started in December 2006 and continued until June 2007. When compared with previous RVF outbreaks in the country, the 2006-07 outbreak was the most extensive in cattle, sheep, goats, and camels affecting thousands of animals in 29 of 69 administrative districts across six of the eight provinces. This contrasted with the distribution of approximately 700 human RVF cases in the country, where over 85% of these cases were located in four districts; Garissa and Ijara districts in Northeastern Province, Baringo district in Rift Valley Province, and Kilifi district in Coast Province. Analysis of livestock and human data suggests that livestock infections occur before virus detection in humans, as supported by clustering of human RVF cases around livestock cases in Baringo district. The highest livestock morbidity and mortality rates were recorded in Garissa and Baringo districts, the same districts that recorded a high number of human cases. The districts that reported RVF in livestock for the first time in 2006/07 included Kitui, Tharaka, Meru South, Meru central, Mwingi, Embu, and Mbeere in Eastern Province, Malindi and Taita taveta in Coast Province, Kirinyaga and Murang'a in Central Province, and Baringo and Samburu in Rift Valley Province, indicating that the disease was occurring in new regions in the country.


Assuntos
Animais Domésticos/virologia , Surtos de Doenças/veterinária , Febre do Vale de Rift/veterinária , Vírus da Febre do Vale do Rift , Animais , Anticorpos Antivirais/sangue , Camelus/virologia , Bovinos/virologia , Doenças dos Bovinos/diagnóstico , Doenças dos Bovinos/epidemiologia , Doenças dos Bovinos/fisiopatologia , Doenças dos Bovinos/virologia , Doenças das Cabras/diagnóstico , Doenças das Cabras/epidemiologia , Doenças das Cabras/fisiopatologia , Doenças das Cabras/virologia , Cabras/virologia , Humanos , Quênia/epidemiologia , Febre do Vale de Rift/epidemiologia , Febre do Vale de Rift/fisiopatologia , Febre do Vale de Rift/virologia , Vírus da Febre do Vale do Rift/genética , Vírus da Febre do Vale do Rift/imunologia , Vírus da Febre do Vale do Rift/isolamento & purificação , Ovinos/virologia , Doenças dos Ovinos/diagnóstico , Doenças dos Ovinos/epidemiologia , Doenças dos Ovinos/fisiopatologia , Doenças dos Ovinos/virologia
8.
J Virol ; 82(22): 11152-66, 2008 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-18786992

RESUMO

Rift Valley fever (RVF) virus historically has caused widespread and extensive outbreaks of severe human and livestock disease throughout Africa, Madagascar, and the Arabian Peninsula. Following unusually heavy rainfall during the late autumn of 2006, reports of human and animal illness consistent with RVF virus infection emerged across semiarid regions of the Garissa District of northeastern Kenya and southern Somalia. Following initial RVF virus laboratory confirmation, a high-throughput RVF diagnostic facility was established at the Kenyan Central Veterinary Laboratories in Kabete, Kenya, to support the real-time identification of infected livestock and to facilitate outbreak response and control activities. A total of 3,250 specimens from a variety of animal species, including domesticated livestock (cattle, sheep, goats, and camels) and wildlife collected from a total of 55 of 71 Kenyan administrative districts, were tested by molecular and serologic assays. Evidence of RVF infection was found in 9.2% of animals tested and across 23 districts of Kenya, reflecting the large number of affected livestock and the geographic extent of the outbreak. The complete S, M, and/or L genome segment sequence was obtained from a total of 31 RVF virus specimens spanning the entire known outbreak period (December-May) and geographic areas affected by RVF virus activity. Extensive genomic analyses demonstrated the concurrent circulation of multiple virus lineages, gene segment reassortment, and the common ancestry of the 2006/2007 outbreak viruses with those from the 1997-1998 east African RVF outbreak. Evidence of recent increases in genomic diversity and effective population size 2 to 4 years prior to the 2006-2007 outbreak also was found, indicating ongoing RVF virus activity and evolution during the interepizootic/epidemic period. These findings have implications for further studies of basic RVF virus ecology and the design of future surveillance/diagnostic activities, and they highlight the critical need for safe and effective vaccines and antiviral compounds to combat this significant veterinary and public health threat.


Assuntos
Surtos de Doenças , Febre do Vale de Rift/veterinária , Vírus da Febre do Vale do Rift/classificação , Vírus da Febre do Vale do Rift/isolamento & purificação , Animais , Animais Domésticos , Camelus , Bovinos , Doenças dos Bovinos/virologia , Análise por Conglomerados , Genótipo , Doenças das Cabras/virologia , Cabras , Humanos , Quênia/epidemiologia , Epidemiologia Molecular , Dados de Sequência Molecular , Filogenia , Febre do Vale de Rift/virologia , Vírus da Febre do Vale do Rift/genética , Análise de Sequência de DNA , Sorotipagem , Ovinos , Doenças dos Ovinos/virologia
9.
J Med Microbiol ; 55(Pt 5): 585-591, 2006 May.
Artigo em Inglês | MEDLINE | ID: mdl-16585646

RESUMO

In Africa, multidrug-resistant non-typhoidal salmonellae (NTS) are one of the leading causes of morbidity and high mortality in children under 5 years of age, second in importance only to pneumococcal disease. The authors studied NTS isolates from paediatric admissions at two hospitals in Nairobi, Kenya, and followed the index cases to their homes, where rectal swabs and stools from parents and siblings, and from animals in close contact, were obtained. The majority of NTS obtained from cases were Salmonella enterica serotype Typhimurium (106 out of 193; 54.9%) and Salmonella enterica serotype Enteritidis (64; 33.2%), a significant proportion (34.2%) of which were multiply resistant to three or more antibiotics, including ampicillin, tetracycline, cotrimoxazole and chloramphenicol. Only 23.4% of NTS were fully susceptible to all 10 antibiotics tested. Of the 32 NTS obtained from contacts (nine adults and 23 children) at the homes of index cases, 21 (65.6%) isolates were similar by antibiotic-susceptibility profiles and plasmid content, and their XbaI- and SpeI-digested chromosomal DNA patterns were indistinguishable from those of the corresponding index cases. Only three out of 180 (1.7%) samples from environmental sources, including animals, soil, sewers and food, contained NTS matching those from corresponding index cases. The carriage of NTS in an asymptomatic population was represented by 6.9% of human contacts from 27 out of 127 homes sampled. This population of carriers may represent an important reservoir of NTS that would play a significant role in the epidemiology of community-acquired NTS bacteraemia in children.


Assuntos
Portador Sadio/microbiologia , Farmacorresistência Bacteriana Múltipla , Infecções por Salmonella/microbiologia , Infecções por Salmonella/transmissão , Salmonella enterica/efeitos dos fármacos , Antibacterianos/farmacologia , Criança , Pré-Escolar , Impressões Digitais de DNA , DNA Bacteriano/análise , DNA Bacteriano/genética , Saúde da Família , Fezes/microbiologia , Humanos , Lactente , Recém-Nascido , Quênia/epidemiologia , Testes de Sensibilidade Microbiana , Epidemiologia Molecular , Plasmídeos/análise , Reto/microbiologia , Infecções por Salmonella/epidemiologia , Infecções por Salmonella/patologia , Salmonella enterica/classificação , Salmonella enterica/isolamento & purificação , Salmonella enterica/patogenicidade , Salmonella enteritidis/classificação , Salmonella enteritidis/efeitos dos fármacos , Salmonella enteritidis/isolamento & purificação , Salmonella enteritidis/patogenicidade , Salmonella typhimurium/classificação , Salmonella typhimurium/efeitos dos fármacos , Salmonella typhimurium/isolamento & purificação , Salmonella typhimurium/patogenicidade , Zoonoses
SELEÇÃO DE REFERÊNCIAS
DETALHE DA PESQUISA
...