Adapting Strategies for Effective Schistosomiasis Prevention: A Mathematical Modeling Approach

Author:

Tabo Zadoki12ORCID,Kalinda Chester13ORCID,Breuer Lutz24ORCID,Albrecht Christian1

Affiliation:

1. Department of Animal Ecology and Systematics, Justus Liebig University Giessen, Heinrich-Buff-Ring 26 (iFZ), 35392 Giessen, Germany

2. Department of Landscape Ecology and Resource Management, Justus Liebig University Giessen, Heinrich-Buff-Ring 26 (iFZ), 35392 Giessen, Germany

3. Bill and Joyce Cummings Institute of Global Health, University of Global Health Equity, Kigali Heights, Plot 772 KG 7 Ave., Kigali P.O. Box 6955, Rwanda

4. Centre for International Development and Environmental Research (ZEU), Justus Liebig University Giessen, Senckenbergstrasse 3, 35390 Giessen, Germany

Abstract

One of the most deadly neglected tropical diseases known to man is schistosomiasis. Understanding how the disease spreads and evaluating the relevant control strategies are key steps in predicting its spread. We propose a mathematical model to evaluate the potential impact of four strategies: chemotherapy, awareness programs, the mechanical removal of snails and molluscicides, and the impact of a change in temperature on different molluscicide performances based on their half-lives and the length of time they persist in contact with target species. The results show that the recruitment rate of humans and the presence of cercaria and miracidia parasites are crucial factors in disease transmission. However, schistosomiasis can be entirely eradicated by combining all of the four strategies. In the face of climate change and molluscicide degradation, the results show that increasing the temperatures and the number of days a molluscicide persists in the environment before it completely degrades decreases the chemically induced mortality rate of snails while increasing the half-life of different molluscicides increases the death rate of snails. Therefore, eradicating schistosomiasis effectively necessitates a comprehensive integration of all preventative measures. Moreover, regions with different weather patterns and seasonal climates need strategies that have been adapted in terms of the appropriate molluscicide and time intervals for reapplication and effective schistosomiasis control.

Funder

German Academic Exchange Service

Alexander von Humboldt Foundation

Publisher

MDPI AG

Subject

General Mathematics,Engineering (miscellaneous),Computer Science (miscellaneous)

Reference66 articles.

1. Impact of human schistosomiasis in sub-Saharan Africa;Adenowo;Braz. J. Infect. Dis.,2015

2. WHO, World Health Organization (2023, February 03). Schistosomiasis. Available online: https://www.who.int/news-room/fact-sheets/detail/schistosomiasis.

3. Schistosomiasis control: Experiences and lessons from China;Wang;Lancet,2008

4. Rosenberg, M., Utzinger, J., and Addiss, D.G. (2016). Preventive chemotherapy versus innovative and intensified disease management in neglected tropical diseases: A distinction whose shelf life has expired. PLoS Negl. Trop. Dis., 10.

5. WHO, World Health Organization (2023, February 23). Elimination of Schistosomiasis. Available online: http://apps.who.int/gb/ebwha/pdf_files/WHA65/A65_R21-en.pdf.

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