Mechanism of cell-to-cell transmission of flaviviruses
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AI plain-English summaryDengue and Zika viruses slip directly from one infected cell into a neighbouring healthy cell, bypassing the extracellular space entirely. This proposal aims to work out exactly how they do it. Dengue infects more than 50 million people each year, and Zika has caused recent outbreaks linked to severe brain damage in children and Guillain-Barré syndrome in adults. No vaccines or treatments exist for either virus. A major gap in knowledge is how these viruses exit infected cells and preferentially spread into specific cell types. The researchers will test whether the virus moves as free particles, inside vesicles, or through direct cell-to-cell contacts, and whether the viral envelope protein determines which route it takes. This is fundamental science. Understanding the transmission mechanism could eventually reveal new targets for drugs or vaccines that block spread at the cellular level. But the immediate outcome will be a clearer picture of a basic biological process—how an enveloped virus moves between human cells without ever being exposed to the immune system. Similar fundamental work on viral entry and assembly has previously underpinned the development of antivirals for HIV and hepatitis C.
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