Molecular surveillance of circulating dengue genotypes through European travelers
- Cristina Domingo,
- Matthias Niedrig,
- Joaquim Gascón,
- Gustavo Palacios,
- Noelia Reyes,
- María José Malo
- Robert Koch Institut,
- Instituto de Salud Carlos III,
- Departament de Microbiologia,
- Columbia University,
- Charité Universitätsmedizin Berlin,
Open access
Publication Information
Output type
Original language
EnglishPages from-to (Number of pages)
Pages 183-190 (8 pages)Journal (Volume, Issue Number)
Journal of Travel Medicine (Volume 18, Issue 3)Publication milestones
- Published - 05/2011
Publication status
ISSN
1195-1982Publication IDs
- Scopus: 79955708924
- PubMed: 21539658
Abstract
Background. Dengue viruses (DENV) are the most widespread arthropod-borne viruses, which have shown an unexpected geographic expansion, as well as an increase in number and severity of outbreaks in the last decades. Although the emergence of dengue is considered to be due to a number of complex factors, epidemiological studies have shown that some strains of dengue might be associated with increased severity and higher transmission rates than others. In this context, surveillance and identification of the appearance or introduction of more virulent strains, along with fluctuation of DENV among endemic areas are now considered essential public health activities. Methods. Samples from travelers returning from the tropics with acute dengue infections were analyzed to obtain up-dated information on circulating dengue strains. A short nucleotide fragment located in the carboxyl terminus of the dengue E gene was used for the characterization of DENV strains and the identification of their sero- and genotype. Results. One hundred eighty-six new dengue strains have been classified into 12 distinct genotype groups within the four dengue serotypes. The identification of the emergence of different sero- and genotypes, the appearance of new clades correlating with outbreaks, and the identification of a dengue-4 genotype not previously reported have been achieved. Interestingly, African strains characterized in this study have provided valuable data on dengue circulation on the continent. Conclusions. This work demonstrates the convenience of routine application of molecular epidemiology analyses in dengue diagnosis laboratories. The use of molecular epidemiology tools on the analysis of imported dengue infections strengthens data acquisition on dengue strain movements correlating with epidemiological changes. The importance of surveillance of imported diseases contributing data for the epidemiological knowledge of infectious diseases in endemic areas has been oncemore demonstrated.
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