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Spatial–Temporal Patterns in the Enteric Pathogen Contamination of Soil in the Public Environments of Low- and Middle-Income Neighborhoods in Nairobi, Kenya

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  • Fanta D. Gutema

    (Department of Occupational and Environmental Health, University of Iowa, Iowa City, IA 52242, USA
    Department of Microbiology, Immunology and Veterinary Public Health, Addis Ababa University, Bishoftu P.O. Box 34, Ethiopia)

  • Bonphace Okoth

    (African Population and Health Research Center, Nairobi 10787-00100, Kenya)

  • John Agira

    (African Population and Health Research Center, Nairobi 10787-00100, Kenya)

  • Christine S. Amondi

    (African Population and Health Research Center, Nairobi 10787-00100, Kenya)

  • Phylis J. Busienei

    (African Population and Health Research Center, Nairobi 10787-00100, Kenya)

  • Sheillah Simiyu

    (African Population and Health Research Center, Nairobi 10787-00100, Kenya)

  • Blessing Mberu

    (African Population and Health Research Center, Nairobi 10787-00100, Kenya)

  • Daniel Sewell

    (Department of Biostatistics, University of Iowa, Iowa City, IA 52242, USA)

  • Kelly K. Baker

    (Department of Occupational and Environmental Health, University of Iowa, Iowa City, IA 52242, USA)

Abstract

Public spaces in countries with limited societal development can be contaminated with feces containing pathogenic microbes from animals and people. Data on contamination levels, spatial distribution, and the diversity of enteric pathogens in the public settings of low- and middle-income neighborhoods are crucial for devising strategies that minimize the enteric infection burden. The objective of this study was to compare spatial–temporal differences in the detection rate and diversity of enteric pathogens in the public spaces of low- and middle-income neighborhoods of Nairobi, Kenya. TaqMan array card (TAC) molecular assays were employed to analyze soil samples for 19 enteropathogens, along with a selective bacterial culture for pathogenic Enterobacteriaceae. An observational assessment was conducted during every site visit to document the hygienic infrastructure and sanitation conditions at the sites. We detected at least one pathogen in 79% (127/160) and ≥2 pathogens in 67.5% (108/160) of the soil samples tested. The four most frequently detected pathogens were EAEC (67.5%), ETEC (59%), EPEC (57.5%), and STEC (31%). The detection rate (91% vs. 66%) and mean number of enteric pathogens (5 vs. 4.7) were higher in low-income Kibera than in middle-income Jericho. The more extensive spatial distribution of pathogens in Kibera resulted in increases in the detection of different enteric pathogens from within-site (area < 50 m 2 ) and across-site (across-neighborhood) movements compared to Jericho. The pathogen detection rates fluctuated seasonally in Jericho but remained at sustained high levels in Kibera. While better neighborhood conditions were linked with lower pathogen detection rates, pathogenic E. coli remained prevalent in the public environment across both neighborhoods. Future studies should focus on identifying how the sources of pathogen contamination are modified by improved environmental sanitation and hygiene and the role of these contaminated public environments in enteric infections in children.

Suggested Citation

  • Fanta D. Gutema & Bonphace Okoth & John Agira & Christine S. Amondi & Phylis J. Busienei & Sheillah Simiyu & Blessing Mberu & Daniel Sewell & Kelly K. Baker, 2024. "Spatial–Temporal Patterns in the Enteric Pathogen Contamination of Soil in the Public Environments of Low- and Middle-Income Neighborhoods in Nairobi, Kenya," IJERPH, MDPI, vol. 21(10), pages 1-19, October.
  • Handle: RePEc:gam:jijerp:v:21:y:2024:i:10:p:1351-:d:1497059
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    References listed on IDEAS

    as
    1. Danielle N. Medgyesi & John M. Brogan & Daniel K. Sewell & Jean Philippe Creve-Coeur & Laura H. Kwong & Kelly K. Baker, 2018. "Where Children Play: Young Child Exposure to Environmental Hazards during Play in Public Areas in a Transitioning Internally Displaced Persons Community in Haiti," IJERPH, MDPI, vol. 15(8), pages 1-21, August.
    2. Youngmee Tiffany Jung & Ryan James Hum & Wendy Lou & Yu-Ling Cheng, 2017. "Effects of neighbourhood and household sanitation conditions on diarrhea morbidity: Systematic review and meta-analysis," PLOS ONE, Public Library of Science, vol. 12(3), pages 1-17, March.
    3. Alexandra Bastaraud & Philippe Cecchi & Pascal Handschumacher & Mathias Altmann & Ronan Jambou, 2020. "Urbanization and Waterborne Pathogen Emergence in Low-Income Countries: Where and How to Conduct Surveys?," IJERPH, MDPI, vol. 17(2), pages 1-19, January.
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