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A Search for Snail-Related Answers to Explain Differences in Response of Schistosoma mansoni to Praziquantel Treatment among Responding and Persistent Hotspot Villages along the Kenyan Shore of Lake Victoria

Following a 4-year annual praziquantel (PZQ) treatment campaign, the resulting prevalence of Schistosoma mansoni was seen to differ among individual villages along the Kenyan shore of Lake Victoria. We have investigated possible inherent differences in snail-related aspects of transmission among suc...

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Autores principales: Mutuku, Martin W., Laidemitt, Martina R., Beechler, Brianna R., Mwangi, Ibrahim N., Otiato, Fredrick O., Agola, Eric L., Ochanda, Horace, Kamel, Bishoy, Mkoji, Gerald M., Steinauer, Michelle L., Loker, Eric S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society of Tropical Medicine and Hygiene 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6609173/
https://www.ncbi.nlm.nih.gov/pubmed/31162012
http://dx.doi.org/10.4269/ajtmh.19-0089
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author Mutuku, Martin W.
Laidemitt, Martina R.
Beechler, Brianna R.
Mwangi, Ibrahim N.
Otiato, Fredrick O.
Agola, Eric L.
Ochanda, Horace
Kamel, Bishoy
Mkoji, Gerald M.
Steinauer, Michelle L.
Loker, Eric S.
author_facet Mutuku, Martin W.
Laidemitt, Martina R.
Beechler, Brianna R.
Mwangi, Ibrahim N.
Otiato, Fredrick O.
Agola, Eric L.
Ochanda, Horace
Kamel, Bishoy
Mkoji, Gerald M.
Steinauer, Michelle L.
Loker, Eric S.
author_sort Mutuku, Martin W.
collection PubMed
description Following a 4-year annual praziquantel (PZQ) treatment campaign, the resulting prevalence of Schistosoma mansoni was seen to differ among individual villages along the Kenyan shore of Lake Victoria. We have investigated possible inherent differences in snail-related aspects of transmission among such 10 villages, including six persistent hotspot (PHS) villages (≤ 30% reduction in prevalence following repeated treatments) located along the west-facing shore of the lake and four PZQ-responding (RESP) villages (> 30% prevalence reduction following repeated treatment) along the Winam Gulf. When taking into account all sampling sites, times, and water hyacinth presence/absence, shoreline-associated Biomphalaria sudanica from PHS and RESP villages did not differ in relative abundance or prevalence of S. mansoni infection. Water hyacinth intrusions were associated with increased B. sudanica abundance. The deeper water snail Biomphalaria choanomphala was significantly more abundant in the PHS villages, and prevalence of S. mansoni among villages both before and after control was positively correlated with B. choanomphala abundance. Worm recoveries from sentinel mice did not differ between PHS and RESP villages, and abundance of non-schistosome trematode species was not associated with S. mansoni abundance. Biomphalaria choanomphala provides an alternative, deepwater mode of transmission that may favor greater persistence of S. mansoni in PHS villages. As we found evidence for ongoing S. mansoni transmission in all 10 villages, we conclude that conditions conducive for transmission and reinfection occur ubiquitously. This argues for an integrated, basin-wide plan for schistosomiasis control to counteract rapid reinfections facilitated by large snail populations and movements of infected people around the lake.
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spelling pubmed-66091732019-07-19 A Search for Snail-Related Answers to Explain Differences in Response of Schistosoma mansoni to Praziquantel Treatment among Responding and Persistent Hotspot Villages along the Kenyan Shore of Lake Victoria Mutuku, Martin W. Laidemitt, Martina R. Beechler, Brianna R. Mwangi, Ibrahim N. Otiato, Fredrick O. Agola, Eric L. Ochanda, Horace Kamel, Bishoy Mkoji, Gerald M. Steinauer, Michelle L. Loker, Eric S. Am J Trop Med Hyg Articles Following a 4-year annual praziquantel (PZQ) treatment campaign, the resulting prevalence of Schistosoma mansoni was seen to differ among individual villages along the Kenyan shore of Lake Victoria. We have investigated possible inherent differences in snail-related aspects of transmission among such 10 villages, including six persistent hotspot (PHS) villages (≤ 30% reduction in prevalence following repeated treatments) located along the west-facing shore of the lake and four PZQ-responding (RESP) villages (> 30% prevalence reduction following repeated treatment) along the Winam Gulf. When taking into account all sampling sites, times, and water hyacinth presence/absence, shoreline-associated Biomphalaria sudanica from PHS and RESP villages did not differ in relative abundance or prevalence of S. mansoni infection. Water hyacinth intrusions were associated with increased B. sudanica abundance. The deeper water snail Biomphalaria choanomphala was significantly more abundant in the PHS villages, and prevalence of S. mansoni among villages both before and after control was positively correlated with B. choanomphala abundance. Worm recoveries from sentinel mice did not differ between PHS and RESP villages, and abundance of non-schistosome trematode species was not associated with S. mansoni abundance. Biomphalaria choanomphala provides an alternative, deepwater mode of transmission that may favor greater persistence of S. mansoni in PHS villages. As we found evidence for ongoing S. mansoni transmission in all 10 villages, we conclude that conditions conducive for transmission and reinfection occur ubiquitously. This argues for an integrated, basin-wide plan for schistosomiasis control to counteract rapid reinfections facilitated by large snail populations and movements of infected people around the lake. The American Society of Tropical Medicine and Hygiene 2019-07 2019-06-03 /pmc/articles/PMC6609173/ /pubmed/31162012 http://dx.doi.org/10.4269/ajtmh.19-0089 Text en © The American Society of Tropical Medicine and Hygiene This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Articles
Mutuku, Martin W.
Laidemitt, Martina R.
Beechler, Brianna R.
Mwangi, Ibrahim N.
Otiato, Fredrick O.
Agola, Eric L.
Ochanda, Horace
Kamel, Bishoy
Mkoji, Gerald M.
Steinauer, Michelle L.
Loker, Eric S.
A Search for Snail-Related Answers to Explain Differences in Response of Schistosoma mansoni to Praziquantel Treatment among Responding and Persistent Hotspot Villages along the Kenyan Shore of Lake Victoria
title A Search for Snail-Related Answers to Explain Differences in Response of Schistosoma mansoni to Praziquantel Treatment among Responding and Persistent Hotspot Villages along the Kenyan Shore of Lake Victoria
title_full A Search for Snail-Related Answers to Explain Differences in Response of Schistosoma mansoni to Praziquantel Treatment among Responding and Persistent Hotspot Villages along the Kenyan Shore of Lake Victoria
title_fullStr A Search for Snail-Related Answers to Explain Differences in Response of Schistosoma mansoni to Praziquantel Treatment among Responding and Persistent Hotspot Villages along the Kenyan Shore of Lake Victoria
title_full_unstemmed A Search for Snail-Related Answers to Explain Differences in Response of Schistosoma mansoni to Praziquantel Treatment among Responding and Persistent Hotspot Villages along the Kenyan Shore of Lake Victoria
title_short A Search for Snail-Related Answers to Explain Differences in Response of Schistosoma mansoni to Praziquantel Treatment among Responding and Persistent Hotspot Villages along the Kenyan Shore of Lake Victoria
title_sort search for snail-related answers to explain differences in response of schistosoma mansoni to praziquantel treatment among responding and persistent hotspot villages along the kenyan shore of lake victoria
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6609173/
https://www.ncbi.nlm.nih.gov/pubmed/31162012
http://dx.doi.org/10.4269/ajtmh.19-0089
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