Dengue Virus Infection

Dengue virus infection is a mosquito-borne viral disease caused by one of four closely related dengue virus serotypes, producing illness that ranges from mild fever to severe, potentially life-threatening disease. After an infected Aedes mosquito transmits the virus, dengue enters susceptible cells, replicates, and activates innate and adaptive immune responses; antibodies from a previous infection can sometimes enhance infection by a different serotype through antibody-dependent enhancement. Studying dengue virus infection clarifies viral pathogenesis, immune responses, diagnostic markers, vaccine performance, and antiviral strategies while supporting surveillance and public-health measures that reduce transmission.

Dengue Virus Infection - Related Videos

Research

JoVE Journal - Biology
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Protocol for Dengue Infections in Mosquitoes (A. aegypti) and Infection Phenotype Determination

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Cited by 35 •

2007

Once a gene is identified as potentially refractory for the dengue virus, it must be evaluated for it's role in preventing viral infections within the mosquito. This protocol illustrates how the extent of dengue infections of mosquitoes can be assayed. The techniques for growing up the virus in culture, membrane feeding mosquitoes human blood, and assaying viral titers in the mosquito midgut are demonstrated.

Research

JoVE Journal - Immunology and Infection

Visualizing Dengue Virus through Alexa Fluor Labeling

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Cited by 12 •

2011

Taking advantage of the advancements in fluorophore development and imaging technology, a simple method of Alexa Fluor labeling of dengue virus was devised to visualize the early interactions between virus and cell.

Antibody-Dependent Enhancement of Zika Virus by Dengue Antibodies in Human Primary Macrophages

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2026

Source: Asad, S., et al. Quantification of Antibody-dependent Enhancement of the Zika Virus in Primary Human Cells. J. Vis. Exp. (2019)This video demonstrates antibody-dependent enhancement of Zika virus infection in human primary macrophages, using dengue antibody–virus complexes to model how cross-reactive antibodies facilitate Fcγ receptor–mediated viral entry and replication for studying infection mechanisms and immune interactions.

Measuring Dengue Virus RNA in the Culture Supernatant of Infected Cells by Real-time Quantitative Polymerase Chain Reaction

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Cited by 7 •

2018

Real-time quantitative polymerase chain reaction analysis combined with reverse transcription (RT-qPCR) has been widely used to measure the level of RNA virus infections. Here we present a direct RT-qPCR assay, which does not require an RNA purification step, developed for the quantification of several RNA viruses, including dengue virus.

Preventing the Spread of Malaria and Dengue Fever Using Genetically Modified Mosquitoes

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Cited by 10 •

2007

In this candid interview, Anthony A. James explains how mosquito genetics can be exploited to control malaria and dengue transmission. Population replacement strategy, the idea that transgenic mosquitoes can be released into the wild to control disease transmission, is introduced as well as the concept of genetic drive and the design criterion for an effective genetic drive system. The ethical considerations of releasing genetically-modified organisms into the wild are also discussed.

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