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Dengue virus transmission dominated by those with undetected infection

Date:
May 4, 2018
Source:
University of Notre Dame
Summary:
A new study estimates that more than 80 percent of dengue virus infections are attributable to individuals with mild to no symptoms who do not seek treatment from a physician.
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People showing virtually no symptoms are likely the primary source of dengue fever, according to new research published in PLOS Pathogens. Nearly 400 million people each year are infected with dengue virus, which is transmitted through mosquitoes.

The study estimates that more than 80 percent of dengue virus infections are attributable to individuals with mild to no symptoms who do not seek treatment from a physician. The study also indicates that nearly a quarter of dengue virus transmission is the result of mosquitoes biting those already infected before the onset of symptoms. By the time those symptoms appear, the opportunity to prevent the virus from spreading has passed.

"Until a few years ago, it was assumed that individuals with mild to no symptoms contributed relatively little to dengue virus transmission," said Alex Perkins, Eck Family Assistant Professor of Biological Sciences at the University of Notre Dame and senior author on the study. "Our research reveals that people showing no symptoms of dengue virus infection are contributing much more than was previously recognized, so that we now have a better idea of the large extent to which they contribute to the spread of this disease."

Researchers at the University of Notre Dame used mathematical modeling to quantify what fraction of dengue virus infections might be caused by people whose illnesses were undetected by public health surveillance systems. Their work involved integrating data sets on the amount of virus in the blood during various stages of infection, the severity of symptoms in relation to previous infections and the proportion of infections resulting in clinical consultation.

The World Health Organization currently focuses disease surveillance efforts on detecting outbreaks, monitoring trends in the number of cases and assessing the possibility of outbreaks. This surveillance encompasses the monitoring of suspected and confirmed dengue cases.

"Unfortunately, based on our study, those who need to be targeted with interventions are either being identified after they have already contributed to transmission or are not being identified at all," said Perkins. "Our results indicate that it might be necessary to shift emphasis toward more proactive disease prevention strategies that do not rely as strongly on responding to detected cases."

The lead author on the study is Quirine ten Bosch, a former biological sciences doctoral student and graduate fellow of the Eck Institute for Global Health at Notre Dame. She is currently a postdoctoral scholar at Institut Pasteur in Paris. Perkins and ten Bosch are affiliated members of the Eck Institute for Global Health.


Story Source:

Materials provided by University of Notre Dame. Original written by Brandi Klingerman. Note: Content may be edited for style and length.


Journal Reference:

  1. Quirine A. ten Bosch, Hannah E. Clapham, Louis Lambrechts, Veasna Duong, Philippe Buchy, Benjamin M. Althouse, Alun L. Lloyd, Lance A. Waller, Amy C. Morrison, Uriel Kitron, Gonzalo M. Vazquez-Prokopec, Thomas W. Scott, T. Alex Perkins. Contributions from the silent majority dominate dengue virus transmission. PLOS Pathogens, 2018; 14 (5): e1006965 DOI: 10.1371/journal.ppat.1006965

Cite This Page:

University of Notre Dame. "Dengue virus transmission dominated by those with undetected infection." ScienceDaily. ScienceDaily, 4 May 2018. <www.sciencedaily.com/releases/2018/05/180504201839.htm>.
University of Notre Dame. (2018, May 4). Dengue virus transmission dominated by those with undetected infection. ScienceDaily. Retrieved December 10, 2024 from www.sciencedaily.com/releases/2018/05/180504201839.htm
University of Notre Dame. "Dengue virus transmission dominated by those with undetected infection." ScienceDaily. www.sciencedaily.com/releases/2018/05/180504201839.htm (accessed December 10, 2024).

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