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A Research Agenda for Helminth Diseases of Humans: Modelling for Control and Elimination

Mathematical modelling of helminth infections has the potential to inform policy and guide research for the control and elimination of human helminthiases. However, this potential, unlike in other parasitic and infectious diseases, has yet to be realised. To place contemporary efforts in a historica...

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Autores principales: Basáñez, María-Gloria, McCarthy, James S., French, Michael D., Yang, Guo-Jing, Walker, Martin, Gambhir, Manoj, Prichard, Roger K., Churcher, Thomas S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3335861/
https://www.ncbi.nlm.nih.gov/pubmed/22545162
http://dx.doi.org/10.1371/journal.pntd.0001548
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author Basáñez, María-Gloria
McCarthy, James S.
French, Michael D.
Yang, Guo-Jing
Walker, Martin
Gambhir, Manoj
Prichard, Roger K.
Churcher, Thomas S.
author_facet Basáñez, María-Gloria
McCarthy, James S.
French, Michael D.
Yang, Guo-Jing
Walker, Martin
Gambhir, Manoj
Prichard, Roger K.
Churcher, Thomas S.
author_sort Basáñez, María-Gloria
collection PubMed
description Mathematical modelling of helminth infections has the potential to inform policy and guide research for the control and elimination of human helminthiases. However, this potential, unlike in other parasitic and infectious diseases, has yet to be realised. To place contemporary efforts in a historical context, a summary of the development of mathematical models for helminthiases is presented. These efforts are discussed according to the role that models can play in furthering our understanding of parasite population biology and transmission dynamics, and the effect on such dynamics of control interventions, as well as in enabling estimation of directly unobservable parameters, exploration of transmission breakpoints, and investigation of evolutionary outcomes of control. The Disease Reference Group on Helminth Infections (DRG4), established in 2009 by the Special Programme for Research and Training in Tropical Diseases (TDR), was given the mandate to review helminthiases research and identify research priorities and gaps. A research and development agenda for helminthiasis modelling is proposed based on identified gaps that need to be addressed for models to become useful decision tools that can support research and control operations effectively. This agenda includes the use of models to estimate the impact of large-scale interventions on infection incidence; the design of sampling protocols for the monitoring and evaluation of integrated control programmes; the modelling of co-infections; the investigation of the dynamical relationship between infection and morbidity indicators; the improvement of analytical methods for the quantification of anthelmintic efficacy and resistance; the determination of programme endpoints; the linking of dynamical helminth models with helminth geostatistical mapping; and the investigation of the impact of climate change on human helminthiases. It is concluded that modelling should be embedded in helminth research, and in the planning, evaluation, and surveillance of interventions from the outset. Modellers should be essential members of interdisciplinary teams, propitiating a continuous dialogue with end users and stakeholders to reflect public health needs in the terrain, discuss the scope and limitations of models, and update biological assumptions and model outputs regularly. It is highlighted that to reach these goals, a collaborative framework must be developed for the collation, annotation, and sharing of databases from large-scale anthelmintic control programmes, and that helminth modellers should join efforts to tackle key questions in helminth epidemiology and control through the sharing of such databases, and by using diverse, yet complementary, modelling approaches.
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spelling pubmed-33358612012-04-27 A Research Agenda for Helminth Diseases of Humans: Modelling for Control and Elimination Basáñez, María-Gloria McCarthy, James S. French, Michael D. Yang, Guo-Jing Walker, Martin Gambhir, Manoj Prichard, Roger K. Churcher, Thomas S. PLoS Negl Trop Dis Review Mathematical modelling of helminth infections has the potential to inform policy and guide research for the control and elimination of human helminthiases. However, this potential, unlike in other parasitic and infectious diseases, has yet to be realised. To place contemporary efforts in a historical context, a summary of the development of mathematical models for helminthiases is presented. These efforts are discussed according to the role that models can play in furthering our understanding of parasite population biology and transmission dynamics, and the effect on such dynamics of control interventions, as well as in enabling estimation of directly unobservable parameters, exploration of transmission breakpoints, and investigation of evolutionary outcomes of control. The Disease Reference Group on Helminth Infections (DRG4), established in 2009 by the Special Programme for Research and Training in Tropical Diseases (TDR), was given the mandate to review helminthiases research and identify research priorities and gaps. A research and development agenda for helminthiasis modelling is proposed based on identified gaps that need to be addressed for models to become useful decision tools that can support research and control operations effectively. This agenda includes the use of models to estimate the impact of large-scale interventions on infection incidence; the design of sampling protocols for the monitoring and evaluation of integrated control programmes; the modelling of co-infections; the investigation of the dynamical relationship between infection and morbidity indicators; the improvement of analytical methods for the quantification of anthelmintic efficacy and resistance; the determination of programme endpoints; the linking of dynamical helminth models with helminth geostatistical mapping; and the investigation of the impact of climate change on human helminthiases. It is concluded that modelling should be embedded in helminth research, and in the planning, evaluation, and surveillance of interventions from the outset. Modellers should be essential members of interdisciplinary teams, propitiating a continuous dialogue with end users and stakeholders to reflect public health needs in the terrain, discuss the scope and limitations of models, and update biological assumptions and model outputs regularly. It is highlighted that to reach these goals, a collaborative framework must be developed for the collation, annotation, and sharing of databases from large-scale anthelmintic control programmes, and that helminth modellers should join efforts to tackle key questions in helminth epidemiology and control through the sharing of such databases, and by using diverse, yet complementary, modelling approaches. Public Library of Science 2012-04-24 /pmc/articles/PMC3335861/ /pubmed/22545162 http://dx.doi.org/10.1371/journal.pntd.0001548 Text en Basáñez et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Review
Basáñez, María-Gloria
McCarthy, James S.
French, Michael D.
Yang, Guo-Jing
Walker, Martin
Gambhir, Manoj
Prichard, Roger K.
Churcher, Thomas S.
A Research Agenda for Helminth Diseases of Humans: Modelling for Control and Elimination
title A Research Agenda for Helminth Diseases of Humans: Modelling for Control and Elimination
title_full A Research Agenda for Helminth Diseases of Humans: Modelling for Control and Elimination
title_fullStr A Research Agenda for Helminth Diseases of Humans: Modelling for Control and Elimination
title_full_unstemmed A Research Agenda for Helminth Diseases of Humans: Modelling for Control and Elimination
title_short A Research Agenda for Helminth Diseases of Humans: Modelling for Control and Elimination
title_sort research agenda for helminth diseases of humans: modelling for control and elimination
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3335861/
https://www.ncbi.nlm.nih.gov/pubmed/22545162
http://dx.doi.org/10.1371/journal.pntd.0001548
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