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Dengue fever

About: Dengue fever is a research topic. Over the lifetime, 17463 publications have been published within this topic receiving 485745 citations. The topic is also known as: Dengue & dengue disease.


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Journal ArticleDOI
TL;DR: The results suggest that recombinant proteins can be used in diagnostic assays for dengue to overcome safety issues associated with the use of whole virus.
Abstract: An immunochromatographic test that incorporates recombinant antigens (Dengue Duo Rapid Strip Test; PanBio, Brisbane, Australia) has recently become commercially available. This assay is performed in 15 min and detects both immunoglobulin M (IgM) and IgG in a capture format. The four recombinant proteins used represent the N-terminal 80% of the viral envelope glycoproteins of dengue viruses 1, 2, 3, and 4, respectively. The sensitivity and specificity of the recombinant-antigen-based assay were 90 and 86%, respectively. The similar diagnostic performance of these antigens to that of enzyme-linked immunosorbent assays using whole dengue virus suggests that they mimic whole dengue viruses in primary structure and epitope conformation. These results suggest that recombinant proteins can be used in diagnostic assays for dengue to overcome safety issues associated with the use of whole virus.

119 citations

Journal ArticleDOI
TL;DR: Examination of features of the human infection required for the mosquito to acquire the virus via natural blood feeding, as well as the biological and environmental factors that influence a mosquito’s susceptibility to infection, up to the point that they are capable of transmitting the virus to a new host.
Abstract: The successful transmission of dengue virus from a human host to a mosquito vector requires a complex set of factors to align. It is becoming increasingly important to improve our understanding of the parameters that shape the human to mosquito component of the transmission cycle so that vaccines and therapeutic anti-virals can be fully evaluated and epidemiological models refined. Here we describe these factors, and discuss the biological and environmental impacts and demographic changes that are influencing these dynamics. Specifically, we examine features of the human infection required for the mosquito to acquire the virus via natural blood feeding, as well as the biological and environmental factors that influence a mosquito’s susceptibility to infection, up to the point that they are capable of transmitting the virus to a new host.

119 citations

Journal ArticleDOI
11 Jan 2013-PLOS ONE
TL;DR: High-throughput yeast two-hybrid screening is used to identify mosquito and human proteins that physically interact with dengue proteins and identified a subset of the host-dengue interactions that are now supported by multiple forms of evidence, which should be useful for understanding the interplay between d Dengue and its hosts.
Abstract: The four divergent serotypes of dengue virus are the causative agents of dengue fever, dengue hemorrhagic fever and dengue shock syndrome. About two-fifths of the world's population live in areas where dengue is prevalent, and thousands of deaths are caused by the viruses every year. Dengue virus is transmitted from one person to another primarily by the yellow fever mosquito, Aedes aegypti. Recent studies have begun to define how the dengue viral proteins interact with host proteins to mediate viral replication and pathogenesis. A combined analysis of these studies, however, suggests that many virus-host protein interactions remain to be identified, especially for the mosquito host. In this study, we used high-throughput yeast two-hybrid screening to identify mosquito and human proteins that physically interact with dengue proteins. We tested each identified host protein against the proteins from all four serotypes of dengue to identify interactions that are conserved across serotypes. We further confirmed many of the interactions using co-affinity purification assays. As in other large-scale screens, we identified some previously detected interactions and many new ones, moving us closer to a complete host – dengue protein interactome. To help summarize and prioritize the data for further study, we combined our interactions with other published data and identified a subset of the host-dengue interactions that are now supported by multiple forms of evidence. These data should be useful for understanding the interplay between dengue and its hosts and may provide candidates for drug targets and vector control strategies.

119 citations

Journal ArticleDOI
TL;DR: The 1997 WHO d Dengue case definition can be used to exclude dengue, and the NS1 strip test can beused to confirm denge infection, although the latter should be interpreted with caution in regions where secondary dengues infection is prevalent.
Abstract: Because healthcare facilities in many dengue endemic countries lack laboratory support, early dengue diagnosis must rely on either clinical recognition or a bedside diagnostic test. We evaluated the sensitivity and specificity of the 1997 and 2009 World Health Organization (WHO) dengue classification schemes and the NS1 strip test in acute sera from 154 virologically confirmed dengue patients and 200 patients with other febrile illnesses. Both WHO classification schemes had high sensitivity but lacked specificity. The NS1 strip test had high specificity, but its sensitivity was significantly lower in secondary compared with primary dengue infections. Differences in viral serotypes did not affect the performance of any of the three diagnostic approaches. Taken collectively, our findings indicate that the 1997 WHO dengue case definition can be used to exclude dengue, and the NS1 strip test can be used to confirm dengue infection, although the latter should be interpreted with caution in regions where secondary dengue infection is prevalent.

119 citations

Journal Article
TL;DR: In this article, the authors describe virological, epidemiological and clinical aspects of Chikungunya, which causes sporadic cases or epidemics, sometimes massive, such as the one spreading in the Americas since December 2013.
Abstract: Arboviral diseases transmitted by mosquitoes such as Dengue, Chikungunya and West Nile are global health issues of growing magnitude. Their dissemination in new areas is triggered by increased mobility of persons, animal reservoirs and vectors. This article describes virological, epidemiological and clinical aspects of Chikungunya, which causes sporadic cases or epidemics, sometimes massive, such as the one spreading in the Americas since December 2013. Chikungunya should be suspected in all travellers presenting with fever, arthralgia and sometimes a rash returning from an endemic area. In the absence of vaccine, individual protection relies on the prevention of mosquito bites.

119 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
20241
20231,464
20222,917
2021992
20201,237
20191,168