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Co-infections determine patterns of mortality in a population exposed to parasite infection

Many individual hosts are infected with multiple parasite species, and this may increase or decrease the pathogenicity of the infections. This phenomenon is termed heterologous reactivity and is potentially an important determinant of both patterns of morbidity and mortality and of the impact of dis...

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Autores principales: Woolhouse, Mark E. J., Thumbi, Samuel M., Jennings, Amy, Chase-Topping, Margo, Callaby, Rebecca, Kiara, Henry, Oosthuizen, Marinda C., Mbole-Kariuki, Mary N., Conradie, Ilana, Handel, Ian G., Poole, E. Jane, Njiiri, Evalyne, Collins, Nicola E., Murray, Gemma, Tapio, Miika, Auguet, Olga Tosas, Weir, Willie, Morrison, W. Ivan, Kruuk, Loeske E. B., Bronsvoort, B. Mark de C., Hanotte, Olivier, Coetzer, Koos, Toye, Philip G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for the Advancement of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4643819/
https://www.ncbi.nlm.nih.gov/pubmed/26601143
http://dx.doi.org/10.1126/sciadv.1400026
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author Woolhouse, Mark E. J.
Thumbi, Samuel M.
Jennings, Amy
Chase-Topping, Margo
Callaby, Rebecca
Kiara, Henry
Oosthuizen, Marinda C.
Mbole-Kariuki, Mary N.
Conradie, Ilana
Handel, Ian G.
Poole, E. Jane
Njiiri, Evalyne
Collins, Nicola E.
Murray, Gemma
Tapio, Miika
Auguet, Olga Tosas
Weir, Willie
Morrison, W. Ivan
Kruuk, Loeske E. B.
Bronsvoort, B. Mark de C.
Hanotte, Olivier
Coetzer, Koos
Toye, Philip G.
author_facet Woolhouse, Mark E. J.
Thumbi, Samuel M.
Jennings, Amy
Chase-Topping, Margo
Callaby, Rebecca
Kiara, Henry
Oosthuizen, Marinda C.
Mbole-Kariuki, Mary N.
Conradie, Ilana
Handel, Ian G.
Poole, E. Jane
Njiiri, Evalyne
Collins, Nicola E.
Murray, Gemma
Tapio, Miika
Auguet, Olga Tosas
Weir, Willie
Morrison, W. Ivan
Kruuk, Loeske E. B.
Bronsvoort, B. Mark de C.
Hanotte, Olivier
Coetzer, Koos
Toye, Philip G.
author_sort Woolhouse, Mark E. J.
collection PubMed
description Many individual hosts are infected with multiple parasite species, and this may increase or decrease the pathogenicity of the infections. This phenomenon is termed heterologous reactivity and is potentially an important determinant of both patterns of morbidity and mortality and of the impact of disease control measures at the population level. Using infections with Theileria parva (a tick-borne protozoan, related to Plasmodium) in indigenous African cattle [where it causes East Coast fever (ECF)] as a model system, we obtain the first quantitative estimate of the effects of heterologous reactivity for any parasitic disease. In individual calves, concurrent co-infection with less pathogenic species of Theileria resulted in an 89% reduction in mortality associated with T. parva infection. Across our study population, this corresponds to a net reduction in mortality due to ECF of greater than 40%. Using a mathematical model, we demonstrate that this degree of heterologous protection provides a unifying explanation for apparently disparate epidemiological patterns: variable disease-induced mortality rates, age-mortality profiles, weak correlations between the incidence of infection and disease (known as endemic stability), and poor efficacy of interventions that reduce exposure to multiple parasite species. These findings can be generalized to many other infectious diseases, including human malaria, and illustrate how co-infections can play a key role in determining population-level patterns of morbidity and mortality due to parasite infections.
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spelling pubmed-46438192015-11-23 Co-infections determine patterns of mortality in a population exposed to parasite infection Woolhouse, Mark E. J. Thumbi, Samuel M. Jennings, Amy Chase-Topping, Margo Callaby, Rebecca Kiara, Henry Oosthuizen, Marinda C. Mbole-Kariuki, Mary N. Conradie, Ilana Handel, Ian G. Poole, E. Jane Njiiri, Evalyne Collins, Nicola E. Murray, Gemma Tapio, Miika Auguet, Olga Tosas Weir, Willie Morrison, W. Ivan Kruuk, Loeske E. B. Bronsvoort, B. Mark de C. Hanotte, Olivier Coetzer, Koos Toye, Philip G. Sci Adv Research Articles Many individual hosts are infected with multiple parasite species, and this may increase or decrease the pathogenicity of the infections. This phenomenon is termed heterologous reactivity and is potentially an important determinant of both patterns of morbidity and mortality and of the impact of disease control measures at the population level. Using infections with Theileria parva (a tick-borne protozoan, related to Plasmodium) in indigenous African cattle [where it causes East Coast fever (ECF)] as a model system, we obtain the first quantitative estimate of the effects of heterologous reactivity for any parasitic disease. In individual calves, concurrent co-infection with less pathogenic species of Theileria resulted in an 89% reduction in mortality associated with T. parva infection. Across our study population, this corresponds to a net reduction in mortality due to ECF of greater than 40%. Using a mathematical model, we demonstrate that this degree of heterologous protection provides a unifying explanation for apparently disparate epidemiological patterns: variable disease-induced mortality rates, age-mortality profiles, weak correlations between the incidence of infection and disease (known as endemic stability), and poor efficacy of interventions that reduce exposure to multiple parasite species. These findings can be generalized to many other infectious diseases, including human malaria, and illustrate how co-infections can play a key role in determining population-level patterns of morbidity and mortality due to parasite infections. American Association for the Advancement of Science 2015-03-20 /pmc/articles/PMC4643819/ /pubmed/26601143 http://dx.doi.org/10.1126/sciadv.1400026 Text en Copyright © 2015, The Authors http://creativecommons.org/licenses/by/4.0/ 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 work is properly cited.
spellingShingle Research Articles
Woolhouse, Mark E. J.
Thumbi, Samuel M.
Jennings, Amy
Chase-Topping, Margo
Callaby, Rebecca
Kiara, Henry
Oosthuizen, Marinda C.
Mbole-Kariuki, Mary N.
Conradie, Ilana
Handel, Ian G.
Poole, E. Jane
Njiiri, Evalyne
Collins, Nicola E.
Murray, Gemma
Tapio, Miika
Auguet, Olga Tosas
Weir, Willie
Morrison, W. Ivan
Kruuk, Loeske E. B.
Bronsvoort, B. Mark de C.
Hanotte, Olivier
Coetzer, Koos
Toye, Philip G.
Co-infections determine patterns of mortality in a population exposed to parasite infection
title Co-infections determine patterns of mortality in a population exposed to parasite infection
title_full Co-infections determine patterns of mortality in a population exposed to parasite infection
title_fullStr Co-infections determine patterns of mortality in a population exposed to parasite infection
title_full_unstemmed Co-infections determine patterns of mortality in a population exposed to parasite infection
title_short Co-infections determine patterns of mortality in a population exposed to parasite infection
title_sort co-infections determine patterns of mortality in a population exposed to parasite infection
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4643819/
https://www.ncbi.nlm.nih.gov/pubmed/26601143
http://dx.doi.org/10.1126/sciadv.1400026
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