Direct and indirect effects of climate change on the risk of infection by water-transmitted pathogens

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Access status: Embargo until 2050-01-01 , es403549s.pdf (1.72 MB)

Publication date

2013

Authors

Sterk, A.
Schijven, J. F.ISNI 0000000390232878
de Nijs, T.
de Roda Husman, Ana MariaISNI 0000000035625060

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Article

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Abstract

Climate change is likely to affect the infectious disease burden from exposure to pathogens in water used for drinking and recreation. Effective intervention measures require quantification of impacts of climate change on the distribution of pathogens in the environment and their potential effects on human health. Objectives of this systematic review were to summarize current knowledge available to estimate how climate change may directly and indirectly affect infection risks due to Campylobacter, Cryptosporidium, norovirus, and Vibrio. Secondary objectives were to prioritize natural processes and interactions that are susceptible to climate change and to identify knowledge gaps. Search strategies were determined based on a conceptual model and scenarios with the main emphasis on The Netherlands. The literature search resulted in a large quantity of publications on climate variables affecting pathogen input and behavior in aquatic environments. However, not all processes and pathogens are evenly covered by the literature, and in many cases, the direction of change is still unclear. To make useful predictions of climate change, it is necessary to combine both negative and positive effects. This review provides an overview of the most important effects of climate change on human health and shows the importance of QMRA to quantify the net effects.

Keywords

SDG 3 - Good Health and Well-being, SDG 13 - Climate Action

Citation

Sterk, A, Schijven, J F, de Nijs, T & de Roda Husman, A M 2013, 'Direct and indirect effects of climate change on the risk of infection by water-transmitted pathogens', Environmental Science and Technology, vol. 47, no. 22, pp. 12648-12660. https://doi.org/10.1021/es403549s