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Exploring water, sanitation, and hygiene coverage targets for reaching and sustaining trachoma elimination: G-computation analysis

BACKGROUND: Trachoma is the leading infectious cause of blindness. To reduce transmission, water, sanitation, and hygiene (WaSH) improvements are promoted through a comprehensive public health strategy. Evidence supporting the role of WaSH in trachoma elimination is mixed and it remains unknown what...

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Autores principales: Sullivan, Kristin M., Harding-Esch, Emma M., Keil, Alexander P., Freeman, Matthew C., Batcho, Wilfrid E., Bio Issifou, Amadou A., Bucumi, Victor, Bella, Assumpta L., Epee, Emilienne, Bobo Barkesa, Segni, Seife Gebretsadik, Fikre, Sanha, Salimato, Kalua, Khumbo M., Masika, Michael P., Minnih, Abdallahi O., Abdala, Mariamo, Massangaie, Marília E., Amza, Abdou, Kadri, Boubacar, Nassirou, Beido, Mpyet, Caleb D., Olobio, Nicholas, Badiane, Mouctar D., Elshafie, Balgesa E., Baayenda, Gilbert, Kabona, George E., Kaitaba, Oscar, Simon, Alistidia, Al-Khateeb, Tawfik Q., Mwale, Consity, Bakhtiari, Ana, Westreich, Daniel, Solomon, Anthony W., Gower, Emily W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9925017/
https://www.ncbi.nlm.nih.gov/pubmed/36780437
http://dx.doi.org/10.1371/journal.pntd.0011103
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author Sullivan, Kristin M.
Harding-Esch, Emma M.
Keil, Alexander P.
Freeman, Matthew C.
Batcho, Wilfrid E.
Bio Issifou, Amadou A.
Bucumi, Victor
Bella, Assumpta L.
Epee, Emilienne
Bobo Barkesa, Segni
Seife Gebretsadik, Fikre
Sanha, Salimato
Kalua, Khumbo M.
Masika, Michael P.
Minnih, Abdallahi O.
Abdala, Mariamo
Massangaie, Marília E.
Amza, Abdou
Kadri, Boubacar
Nassirou, Beido
Mpyet, Caleb D.
Olobio, Nicholas
Badiane, Mouctar D.
Elshafie, Balgesa E.
Baayenda, Gilbert
Kabona, George E.
Kaitaba, Oscar
Simon, Alistidia
Al-Khateeb, Tawfik Q.
Mwale, Consity
Bakhtiari, Ana
Westreich, Daniel
Solomon, Anthony W.
Gower, Emily W.
author_facet Sullivan, Kristin M.
Harding-Esch, Emma M.
Keil, Alexander P.
Freeman, Matthew C.
Batcho, Wilfrid E.
Bio Issifou, Amadou A.
Bucumi, Victor
Bella, Assumpta L.
Epee, Emilienne
Bobo Barkesa, Segni
Seife Gebretsadik, Fikre
Sanha, Salimato
Kalua, Khumbo M.
Masika, Michael P.
Minnih, Abdallahi O.
Abdala, Mariamo
Massangaie, Marília E.
Amza, Abdou
Kadri, Boubacar
Nassirou, Beido
Mpyet, Caleb D.
Olobio, Nicholas
Badiane, Mouctar D.
Elshafie, Balgesa E.
Baayenda, Gilbert
Kabona, George E.
Kaitaba, Oscar
Simon, Alistidia
Al-Khateeb, Tawfik Q.
Mwale, Consity
Bakhtiari, Ana
Westreich, Daniel
Solomon, Anthony W.
Gower, Emily W.
author_sort Sullivan, Kristin M.
collection PubMed
description BACKGROUND: Trachoma is the leading infectious cause of blindness. To reduce transmission, water, sanitation, and hygiene (WaSH) improvements are promoted through a comprehensive public health strategy. Evidence supporting the role of WaSH in trachoma elimination is mixed and it remains unknown what WaSH coverages are needed to effectively reduce transmission. METHODS/FINDINGS: We used g-computation to estimate the impact on the prevalence of trachomatous inflammation—follicular among children aged 1–9 years (TF(1-9)) when hypothetical WaSH interventions raised the minimum coverages from 5% to 100% for “nearby” face-washing water (<30 minutes roundtrip collection time) and adult latrine use in an evaluation unit (EU). For each scenario, we estimated the generalized prevalence difference as the TF(1-9) prevalence under the intervention scenarios minus the observed prevalence. Data from 574 cross-sectional surveys conducted in 16 African and Eastern Mediterranean countries were included. Surveys were conducted from 2015–2019 with support from the Global Trachoma Mapping Project and Tropical Data. When modeling interventions among EUs that had not yet met the TF(1-9) elimination target, increasing nearby face-washing water and latrine use coverages above 30% was generally associated with consistent decreases in TF(1-9). For nearby face-washing water, we estimated a ≥25% decrease in TF(1-9) at 65% coverage, with a plateau upon reaching 85% coverage. For latrine use, the estimated decrease in TF(1-9) accelerated from 80% coverage upward, with a ≥25% decrease in TF(1-9) by 85% coverage. Among EUs that had previously met the elimination target, results were inconclusive. CONCLUSIONS: Our results support Sustainable Development Goal 6 and provide insight into potential WaSH-related coverage targets for trachoma elimination. Targets can be tested in future trials to improve evidence-based WaSH guidance for trachoma.
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spelling pubmed-99250172023-02-14 Exploring water, sanitation, and hygiene coverage targets for reaching and sustaining trachoma elimination: G-computation analysis Sullivan, Kristin M. Harding-Esch, Emma M. Keil, Alexander P. Freeman, Matthew C. Batcho, Wilfrid E. Bio Issifou, Amadou A. Bucumi, Victor Bella, Assumpta L. Epee, Emilienne Bobo Barkesa, Segni Seife Gebretsadik, Fikre Sanha, Salimato Kalua, Khumbo M. Masika, Michael P. Minnih, Abdallahi O. Abdala, Mariamo Massangaie, Marília E. Amza, Abdou Kadri, Boubacar Nassirou, Beido Mpyet, Caleb D. Olobio, Nicholas Badiane, Mouctar D. Elshafie, Balgesa E. Baayenda, Gilbert Kabona, George E. Kaitaba, Oscar Simon, Alistidia Al-Khateeb, Tawfik Q. Mwale, Consity Bakhtiari, Ana Westreich, Daniel Solomon, Anthony W. Gower, Emily W. PLoS Negl Trop Dis Research Article BACKGROUND: Trachoma is the leading infectious cause of blindness. To reduce transmission, water, sanitation, and hygiene (WaSH) improvements are promoted through a comprehensive public health strategy. Evidence supporting the role of WaSH in trachoma elimination is mixed and it remains unknown what WaSH coverages are needed to effectively reduce transmission. METHODS/FINDINGS: We used g-computation to estimate the impact on the prevalence of trachomatous inflammation—follicular among children aged 1–9 years (TF(1-9)) when hypothetical WaSH interventions raised the minimum coverages from 5% to 100% for “nearby” face-washing water (<30 minutes roundtrip collection time) and adult latrine use in an evaluation unit (EU). For each scenario, we estimated the generalized prevalence difference as the TF(1-9) prevalence under the intervention scenarios minus the observed prevalence. Data from 574 cross-sectional surveys conducted in 16 African and Eastern Mediterranean countries were included. Surveys were conducted from 2015–2019 with support from the Global Trachoma Mapping Project and Tropical Data. When modeling interventions among EUs that had not yet met the TF(1-9) elimination target, increasing nearby face-washing water and latrine use coverages above 30% was generally associated with consistent decreases in TF(1-9). For nearby face-washing water, we estimated a ≥25% decrease in TF(1-9) at 65% coverage, with a plateau upon reaching 85% coverage. For latrine use, the estimated decrease in TF(1-9) accelerated from 80% coverage upward, with a ≥25% decrease in TF(1-9) by 85% coverage. Among EUs that had previously met the elimination target, results were inconclusive. CONCLUSIONS: Our results support Sustainable Development Goal 6 and provide insight into potential WaSH-related coverage targets for trachoma elimination. Targets can be tested in future trials to improve evidence-based WaSH guidance for trachoma. Public Library of Science 2023-02-13 /pmc/articles/PMC9925017/ /pubmed/36780437 http://dx.doi.org/10.1371/journal.pntd.0011103 Text en © 2023 Sullivan et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://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 Research Article
Sullivan, Kristin M.
Harding-Esch, Emma M.
Keil, Alexander P.
Freeman, Matthew C.
Batcho, Wilfrid E.
Bio Issifou, Amadou A.
Bucumi, Victor
Bella, Assumpta L.
Epee, Emilienne
Bobo Barkesa, Segni
Seife Gebretsadik, Fikre
Sanha, Salimato
Kalua, Khumbo M.
Masika, Michael P.
Minnih, Abdallahi O.
Abdala, Mariamo
Massangaie, Marília E.
Amza, Abdou
Kadri, Boubacar
Nassirou, Beido
Mpyet, Caleb D.
Olobio, Nicholas
Badiane, Mouctar D.
Elshafie, Balgesa E.
Baayenda, Gilbert
Kabona, George E.
Kaitaba, Oscar
Simon, Alistidia
Al-Khateeb, Tawfik Q.
Mwale, Consity
Bakhtiari, Ana
Westreich, Daniel
Solomon, Anthony W.
Gower, Emily W.
Exploring water, sanitation, and hygiene coverage targets for reaching and sustaining trachoma elimination: G-computation analysis
title Exploring water, sanitation, and hygiene coverage targets for reaching and sustaining trachoma elimination: G-computation analysis
title_full Exploring water, sanitation, and hygiene coverage targets for reaching and sustaining trachoma elimination: G-computation analysis
title_fullStr Exploring water, sanitation, and hygiene coverage targets for reaching and sustaining trachoma elimination: G-computation analysis
title_full_unstemmed Exploring water, sanitation, and hygiene coverage targets for reaching and sustaining trachoma elimination: G-computation analysis
title_short Exploring water, sanitation, and hygiene coverage targets for reaching and sustaining trachoma elimination: G-computation analysis
title_sort exploring water, sanitation, and hygiene coverage targets for reaching and sustaining trachoma elimination: g-computation analysis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9925017/
https://www.ncbi.nlm.nih.gov/pubmed/36780437
http://dx.doi.org/10.1371/journal.pntd.0011103
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