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Published in: BMC Public Health 1/2017

Open Access 01-12-2017 | Research article

A large and persistent outbreak of typhoid fever caused by consuming contaminated water and street-vended beverages: Kampala, Uganda, January – June 2015

Authors: Steven Ndugwa Kabwama, Lilian Bulage, Fred Nsubuga, Gerald Pande, David Were Oguttu, Richardson Mafigiri, Christine Kihembo, Benon Kwesiga, Ben Masiira, Allen Eva Okullo, Henry Kajumbula, Joseph Matovu, Issa Makumbi, Milton Wetaka, Sam Kasozi, Simon Kyazze, Melissa Dahlke, Peter Hughes, Juliet Nsimire Sendagala, Monica Musenero, Immaculate Nabukenya, Vincent R. Hill, Eric Mintz, Janell Routh, Gerardo Gómez, Amelia Bicknese, Bao-Ping Zhu

Published in: BMC Public Health | Issue 1/2017

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Abstract

Background

On 6 February 2015, Kampala city authorities alerted the Ugandan Ministry of Health of a “strange disease” that killed one person and sickened dozens. We conducted an epidemiologic investigation to identify the nature of the disease, mode of transmission, and risk factors to inform timely and effective control measures.

Methods

We defined a suspected case as onset of fever (≥37.5 °C) for more than 3 days with abdominal pain, headache, negative malaria test or failed anti-malaria treatment, and at least 2 of the following: diarrhea, nausea or vomiting, constipation, fatigue. A probable case was defined as a suspected case with a positive TUBEX® TF test. A confirmed case had blood culture yielding Salmonella Typhi. We conducted a case-control study to compare exposures of 33 suspected case-patients and 78 controls, and tested water and juice samples.

Results

From 17 February–12 June, we identified 10,230 suspected, 1038 probable, and 51 confirmed cases. Approximately 22.58% (7/31) of case-patients and 2.56% (2/78) of controls drank water sold in small plastic bags (ORM-H = 8.90; 95%CI = 1.60–49.00); 54.54% (18/33) of case-patients and 19.23% (15/78) of controls consumed locally-made drinks (ORM-H = 4.60; 95%CI: 1.90–11.00). All isolates were susceptible to ciprofloxacin and ceftriaxone. Water and juice samples exhibited evidence of fecal contamination.

Conclusion

Contaminated water and street-vended beverages were likely vehicles of this outbreak. At our recommendation authorities closed unsafe water sources and supplied safe water to affected areas.
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Literature
1.
go back to reference Heymann DL. In: Heymann DL, editor. Control of Communicable Diseases. An Official Report of the American Public Health Association. 20th ed. United States of America: Alpha Press; 2014. Heymann DL. In: Heymann DL, editor. Control of Communicable Diseases. An Official Report of the American Public Health Association. 20th ed. United States of America: Alpha Press; 2014.
2.
go back to reference World Health Organization. The diagnosis, treatment and Prevention of Typhoid Fever. World Health Organisation, Department of Vaccines and Biologicals: CH-1211 Geneva 27; 2003. WHO/V&B/03.07. World Health Organization. The diagnosis, treatment and Prevention of Typhoid Fever. World Health Organisation, Department of Vaccines and Biologicals: CH-1211 Geneva 27; 2003. WHO/V&B/03.07.
5.
go back to reference Mogasale V, Maskery B, Ochiai RL, Lee JS, Mogasale VV, et al. Burden of typhoid fever in low-income and middle-income countries: a systematic, literature-based update with risk-factor adjustment. Lancet Glob Health. 2014;2:e570–80.CrossRefPubMed Mogasale V, Maskery B, Ochiai RL, Lee JS, Mogasale VV, et al. Burden of typhoid fever in low-income and middle-income countries: a systematic, literature-based update with risk-factor adjustment. Lancet Glob Health. 2014;2:e570–80.CrossRefPubMed
6.
go back to reference Neil KP, Sodha SV, Lukwago L, O-Tipo S, Mikoleit M, Simington SD, et al. A Large Outbreak of Typhoid Fever Associated With a High Rate of Intestinal Perforation in Kasese District, Uganda, 2008–2009. Clin Infect Dis. 2012;54:1091–9.CrossRefPubMed Neil KP, Sodha SV, Lukwago L, O-Tipo S, Mikoleit M, Simington SD, et al. A Large Outbreak of Typhoid Fever Associated With a High Rate of Intestinal Perforation in Kasese District, Uganda, 2008–2009. Clin Infect Dis. 2012;54:1091–9.CrossRefPubMed
7.
go back to reference Walters MS, Routh J, Mikoleit M, Kadivane S, Ouma C, et al. Shifts in Geographic Distribution and Antimicrobial Resistance during a Prolonged Typhoid Fever Outbreak — Bundibugyo and Kasese Districts, Uganda, 2009–2011. PLoS Negl Trop Dis. 2015;8(3):e2776–e26. Walters MS, Routh J, Mikoleit M, Kadivane S, Ouma C, et al. Shifts in Geographic Distribution and Antimicrobial Resistance during a Prolonged Typhoid Fever Outbreak — Bundibugyo and Kasese Districts, Uganda, 2009–2011. PLoS Negl Trop Dis. 2015;8(3):e2776–e26.
9.
go back to reference Tam FCH, Ling TKW, Wong KT, Leung DTM, Chan RCY, Lim PL. The TUBEX test detects not only typhoid-specific antibodies but also soluble antigens and whole bacteria. J Med Microbiol. 2008;57:316–32.CrossRefPubMed Tam FCH, Ling TKW, Wong KT, Leung DTM, Chan RCY, Lim PL. The TUBEX test detects not only typhoid-specific antibodies but also soluble antigens and whole bacteria. J Med Microbiol. 2008;57:316–32.CrossRefPubMed
10.
go back to reference Mikoleit ML. World Health Organization Foodborne Infections Network Laboratory Protocol: “Biochemical Identification of Salmonella and Shigella Using and Abbreviated Panel of Tests.”. 2010. Mikoleit ML. World Health Organization Foodborne Infections Network Laboratory Protocol: “Biochemical Identification of Salmonella and Shigella Using and Abbreviated Panel of Tests.”. 2010.
12.
go back to reference Sanjiv RS. Standard Analytical Protocol for Salmonella Typhi in Drinking Water. 600/R - 10/133. Washington, DC: United States Environmental Protection Agency, Office of Research and Development. Sanjiv RS. Standard Analytical Protocol for Salmonella Typhi in Drinking Water. 600/R - 10/133. Washington, DC: United States Environmental Protection Agency, Office of Research and Development.
15.
go back to reference World Health Organization, Weekly Epidemiological Record, in Typhoid Vaccines: WHO Position Paper. Geneva: World Health Organization; 2008. p. 49–60. World Health Organization, Weekly Epidemiological Record, in Typhoid Vaccines: WHO Position Paper. Geneva: World Health Organization; 2008. p. 49–60.
17.
go back to reference Keddy KH, Sooka A, Letsoalo ME, Hoyland G, Chaignat CL, Morrissey AB, et al. Sensitivity and specificity of typhoid fever rapid antibody tests for laboratory diagnosis at two sub-Saharan African sites. Bull World Health Organ. 2011;89(9):640–7.CrossRefPubMedPubMedCentral Keddy KH, Sooka A, Letsoalo ME, Hoyland G, Chaignat CL, Morrissey AB, et al. Sensitivity and specificity of typhoid fever rapid antibody tests for laboratory diagnosis at two sub-Saharan African sites. Bull World Health Organ. 2011;89(9):640–7.CrossRefPubMedPubMedCentral
18.
go back to reference Mukonzo JK, Namuwenge PM, Okure G, Mwesige B, Namusisi OK, Mukanga D. Over-the-counter suboptimal dispensing of antibiotics in Uganda. J Multidiscip Healthc. 2013;6:303.PubMedPubMedCentral Mukonzo JK, Namuwenge PM, Okure G, Mwesige B, Namusisi OK, Mukanga D. Over-the-counter suboptimal dispensing of antibiotics in Uganda. J Multidiscip Healthc. 2013;6:303.PubMedPubMedCentral
19.
go back to reference Batwala V, Magnussen P, Nuwaha F. Antibiotic use among patients with febrile illness in a low malaria endemicity setting in Uganda. Malar J. 2011;10:377.CrossRefPubMedPubMedCentral Batwala V, Magnussen P, Nuwaha F. Antibiotic use among patients with febrile illness in a low malaria endemicity setting in Uganda. Malar J. 2011;10:377.CrossRefPubMedPubMedCentral
20.
go back to reference Kibuuka A, Byakika-Kibwika P, Achan J, Yeka A, Nalyazi JN, Mpimbaza A, et al. Bacteremia Among Febrile Ugandan Children Treated with Antimalarials Despite a Negative Malaria Test. Am J Trop Med Hyg. 2015;93(2):276–80.CrossRefPubMedPubMedCentral Kibuuka A, Byakika-Kibwika P, Achan J, Yeka A, Nalyazi JN, Mpimbaza A, et al. Bacteremia Among Febrile Ugandan Children Treated with Antimalarials Despite a Negative Malaria Test. Am J Trop Med Hyg. 2015;93(2):276–80.CrossRefPubMedPubMedCentral
22.
go back to reference Kiyaga C, Sendagire H, Eleanor J, McConnell I, Grosz J, Narayan V, et al. Uganda’s new national laboratory transport system: A successful model for improving access to diagnostic services for early infant HIV diagnosis and other programs. PLoS One. 2013;8(11):e78609.CrossRefPubMedPubMedCentral Kiyaga C, Sendagire H, Eleanor J, McConnell I, Grosz J, Narayan V, et al. Uganda’s new national laboratory transport system: A successful model for improving access to diagnostic services for early infant HIV diagnosis and other programs. PLoS One. 2013;8(11):e78609.CrossRefPubMedPubMedCentral
23.
go back to reference Polonsky JA, Martinez-Pino I, Nackers F, Chonzi P, Manangazira P, Herp MV, et al. Descriptive Epidemiology of Typhoid Fever during an Epidemic in Harare, Zimbabwe, 2012. PLoS One. 2014;9(12):e114702.CrossRefPubMedPubMedCentral Polonsky JA, Martinez-Pino I, Nackers F, Chonzi P, Manangazira P, Herp MV, et al. Descriptive Epidemiology of Typhoid Fever during an Epidemic in Harare, Zimbabwe, 2012. PLoS One. 2014;9(12):e114702.CrossRefPubMedPubMedCentral
24.
go back to reference Muyembe-Tamfum JJ, Veyi J, Kaswa M, Lunguya O, Verhaegen J, Boelaert M. An outbreak of peritonitis caused by multidrug-resistant Salmonella Typhi in Kinshasa, Democratic Republic of Congo. Travel Med Infect Dis. 2009;1:40–3.CrossRef Muyembe-Tamfum JJ, Veyi J, Kaswa M, Lunguya O, Verhaegen J, Boelaert M. An outbreak of peritonitis caused by multidrug-resistant Salmonella Typhi in Kinshasa, Democratic Republic of Congo. Travel Med Infect Dis. 2009;1:40–3.CrossRef
25.
go back to reference Mermin JH, Villar R, Carpenter J, Roberts L, Samaridden A, Gasanova L, et al. Massive Epidemic of Multidrug-Resistant Typhoid Fever in Tajikistan Associated with Consumption of Municipal Water. J Infect Dis. 1999;179(6):1416–22.CrossRefPubMed Mermin JH, Villar R, Carpenter J, Roberts L, Samaridden A, Gasanova L, et al. Massive Epidemic of Multidrug-Resistant Typhoid Fever in Tajikistan Associated with Consumption of Municipal Water. J Infect Dis. 1999;179(6):1416–22.CrossRefPubMed
26.
go back to reference Lewis MD, Serichantalergs O, Pitarangsi C, Chuanak N, Mason CJ, Regmi RL, et al. Typhoid Fever: A Massive, Single-Point Source, Multidrug-Resistant Outbreak in Nepal. Clin Infect Dis. 2005;40(4):554–61.CrossRefPubMed Lewis MD, Serichantalergs O, Pitarangsi C, Chuanak N, Mason CJ, Regmi RL, et al. Typhoid Fever: A Massive, Single-Point Source, Multidrug-Resistant Outbreak in Nepal. Clin Infect Dis. 2005;40(4):554–61.CrossRefPubMed
27.
go back to reference Howard G, Pedley S, Barrett M, Nalubega M, Johal K. Risk factors contributing to microbiological contamination of shallow groundwater in Kampala, Uganda. Water Res. 2003;37(14):3421–9.CrossRefPubMed Howard G, Pedley S, Barrett M, Nalubega M, Johal K. Risk factors contributing to microbiological contamination of shallow groundwater in Kampala, Uganda. Water Res. 2003;37(14):3421–9.CrossRefPubMed
28.
go back to reference Matagi S. Some Issues of Environmental Concern in Kampala, the Capital City of Uganda. Environ Monit Assess. 2002;77(2):121–38.CrossRefPubMed Matagi S. Some Issues of Environmental Concern in Kampala, the Capital City of Uganda. Environ Monit Assess. 2002;77(2):121–38.CrossRefPubMed
29.
go back to reference Uganda Bureau of Statistics (UBOS), ICF International Inc. Uganda Demographic Health Survey 2011. Kampala Uganda: UBOS and Calverton, Maryland: ICF International Inc, 2012 Uganda Bureau of Statistics (UBOS), ICF International Inc. Uganda Demographic Health Survey 2011. Kampala Uganda: UBOS and Calverton, Maryland: ICF International Inc, 2012
31.
go back to reference Carias C, Walters MS, Wefula E, Date KA, Swerdlow DL, Vijayaraghavan M, et al. Economic evaluation of typhoid vaccination in a prolonged typhoid outbreak setting: the case of Kasese district in Uganda. Vaccine. 2015;33(17):2079–85.CrossRefPubMed Carias C, Walters MS, Wefula E, Date KA, Swerdlow DL, Vijayaraghavan M, et al. Economic evaluation of typhoid vaccination in a prolonged typhoid outbreak setting: the case of Kasese district in Uganda. Vaccine. 2015;33(17):2079–85.CrossRefPubMed
33.
go back to reference Wolman A, Gorman AE. The significance of waterborne typhoid fever outbreaks 1920–1930. J Am Water Works Assoc. 1939;23(2):160–201. Wolman A, Gorman AE. The significance of waterborne typhoid fever outbreaks 1920–1930. J Am Water Works Assoc. 1939;23(2):160–201.
34.
go back to reference Hunter P. Waterborne Disease: Epidemiology and Ecology. Chinchester: Wiley; 1997. Hunter P. Waterborne Disease: Epidemiology and Ecology. Chinchester: Wiley; 1997.
35.
go back to reference Cutler D, Miller G. The role of public health improvements in health advances: the twentieth-century United States. Demography. 2005;4(2):1–22.CrossRef Cutler D, Miller G. The role of public health improvements in health advances: the twentieth-century United States. Demography. 2005;4(2):1–22.CrossRef
36.
go back to reference Japanese Ministry of Health and Welfare. A 50-year history of the Ministry of Health and Welfare. Editorial Board of the 50 year history of the ministry of Health and welfare. Japan: 1988. Japanese Ministry of Health and Welfare. A 50-year history of the Ministry of Health and Welfare. Editorial Board of the 50 year history of the ministry of Health and welfare. Japan: 1988.
37.
go back to reference Centers for Disease Control. Achievements in Public Health, 1900–1999: Control of Infectious Diseases. MMWR Morb Mortal Wkly Rep. 1999;48(29):621–9. Centers for Disease Control. Achievements in Public Health, 1900–1999: Control of Infectious Diseases. MMWR Morb Mortal Wkly Rep. 1999;48(29):621–9.
38.
go back to reference World Health Organization (WHO), United Nations Childrens Fund (UNICEF). Progress on Drinking water and sanitation 2014 Update. 2014. World Health Organization (WHO), United Nations Childrens Fund (UNICEF). Progress on Drinking water and sanitation 2014 Update. 2014.
39.
go back to reference Clasen T, Cairncross S, Haller L, Bartram J, Walker D. Cost-effectiveness of water quality interventions for preventing diarrhoeal disease in developing countries. J Water Health. 2007;5(4):599–608.CrossRefPubMed Clasen T, Cairncross S, Haller L, Bartram J, Walker D. Cost-effectiveness of water quality interventions for preventing diarrhoeal disease in developing countries. J Water Health. 2007;5(4):599–608.CrossRefPubMed
40.
go back to reference Sharma SK. Importance of Case Definition in Epidemiological studies. Neuroepidemiology. 2011;37:141–2.CrossRefPubMed Sharma SK. Importance of Case Definition in Epidemiological studies. Neuroepidemiology. 2011;37:141–2.CrossRefPubMed
41.
go back to reference Clasen T, Schmidt WP, Rabie T, Roberts I, Cairncross S. Interventions to improve water quality for preventing diarrhea: systematic review and meta analysis. BMJ. 2007;334(7597):782.CrossRefPubMedPubMedCentral Clasen T, Schmidt WP, Rabie T, Roberts I, Cairncross S. Interventions to improve water quality for preventing diarrhea: systematic review and meta analysis. BMJ. 2007;334(7597):782.CrossRefPubMedPubMedCentral
Metadata
Title
A large and persistent outbreak of typhoid fever caused by consuming contaminated water and street-vended beverages: Kampala, Uganda, January – June 2015
Authors
Steven Ndugwa Kabwama
Lilian Bulage
Fred Nsubuga
Gerald Pande
David Were Oguttu
Richardson Mafigiri
Christine Kihembo
Benon Kwesiga
Ben Masiira
Allen Eva Okullo
Henry Kajumbula
Joseph Matovu
Issa Makumbi
Milton Wetaka
Sam Kasozi
Simon Kyazze
Melissa Dahlke
Peter Hughes
Juliet Nsimire Sendagala
Monica Musenero
Immaculate Nabukenya
Vincent R. Hill
Eric Mintz
Janell Routh
Gerardo Gómez
Amelia Bicknese
Bao-Ping Zhu
Publication date
01-12-2017
Publisher
BioMed Central
Published in
BMC Public Health / Issue 1/2017
Electronic ISSN: 1471-2458
DOI
https://doi.org/10.1186/s12889-016-4002-0

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