Ecoepidemiology and Potential Transmission of Vibrio cholerae among Different Environmental Niches: An Upcoming Threat in Egypt

dc.AffiliationOctober University for modern sciences and Arts (MSA)
dc.contributor.authorIsmail, Eman M
dc.contributor.authorKadry, Mona
dc.contributor.authorElshafiee, Esraa A
dc.contributor.authorRagab, Eman
dc.contributor.authorMorsy, Eman A
dc.contributor.authorRizk, Omar
dc.contributor.authorZaki, Manal M
dc.date.accessioned2021-03-14T09:16:27Z
dc.date.available2021-03-14T09:16:27Z
dc.date.issued02/10/2021
dc.descriptionScopusen_US
dc.description.abstractCholera is a negative public health event caused by Vibrio cholerae. Although V. cholerae is abundant in natural environments, its pattern and transmission between different niches remain puzzling and interrelated. Our study aimed to investigate the occurrence of nonpathogenic V. cholerae in the natural environment during endemicity periods. It also aimed to highlight the role of molecular ecoepidemiology in mapping the routes of spread, transmission, and prevention of possible future cholera outbreaks. V. cholerae was detected in different aquatic environments, waterfowl, and poultry farms located along the length of the Nile River in Giza, Cairo, and Delta provinces, Egypt. After polymerase chain reaction amplification of the specific target outer membrane gene (Omp W) of suspected isolates, we performed sequence analysis, eventually using phylogenetic tree analysis to illustrate the possible epidemiological relationships between different sequences. Data revealed a significant variation in the physicochemical conditions of the examined Nile districts related to temporal, spatial, and anthropogenic activities. Moreover, data showed an evident association between V. cholerae and the clinically diseased Synodontis schall fish. We found that the environmental distress triggered by the salinity shift and elevated temperature in the Middle Delta of the Nile River affects the pathogenesis of V. cholerae, in addition to the characteristics of fish host inhabiting the Rosetta Branch at Kafr El-Zayat, El-Gharbia province, Egypt. In addition, we noted a significant relationship between V. cholerae and poultry sources that feed on the Nile dikes close to the examined districts. Sequence analysis revealed clustering of the waterfowl and broiler chicken isolates with human and aquatic isolated sequences retrieved from the GenBank databases. From the obtained data, we hypothesized that waterfowl act as a potential vector for the intermediate transmission of cholera. Therefore, continuous monitoring of Nile water quality and mitigation of Nile River pollution, in addition to following good managemental practices (GMPs), general hygienic guidelines, and biosecurity in the field of animal production and industry, might be the way to break this cyclic transmission between human, aquatic, and animal sectors. © 2021 by the author. Licensee MDPI, Basel, Switzerland.en_US
dc.identifier.doihttps://doi.org/10.3390/pathogens10020190
dc.identifier.issn20760817
dc.identifier.otherhttps://doi.org/10.3390/pathogens10020190
dc.identifier.urihttps://qrgo.page.link/Js7DV
dc.language.isoen_USen_US
dc.publisherMDPI AGen_US
dc.relation.ispartofseriesPathogens;Volume 10, Issue 2, February 2021, Article number 190, Pages 1-16
dc.subjectCholeraen_US
dc.subjectEcoepidemiologyen_US
dc.subjectGood managemental practicesen_US
dc.subjectHost interactionsen_US
dc.subjectLatent endemicityen_US
dc.subjectNile riveren_US
dc.subjectOmp w geneen_US
dc.subjectViable but not culturable (VBNC)en_US
dc.subjectWaterfowlsen_US
dc.titleEcoepidemiology and Potential Transmission of Vibrio cholerae among Different Environmental Niches: An Upcoming Threat in Egypten_US
dc.typeArticleen_US

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