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Microfluidics Helps MTU Engineers Watch Viral Infection in Real Time

The research helps clarify how antivirals work in a cell to stop the spread of infection

Written byMichigan Technological University
| 3 min read
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Get your popcorn. Engineers and virologists have a new way to watch viral infection go down.

The technique uses microfluidics—the submillimeter control of fluids within a precise, geometric structure. On what is basically a tricked-out microscope slide, chemical engineers from Michigan Technological University have been able to manipulate viruses in a microfluidic device using electric fields. The study, published this summer in Langmuir, looks at changes in the cell membrane and gives researchers a clearer idea of how antivirals work in a cell to stop the spread of infection.

Viruses carry around an outer shell of proteins called a capsid. The proteins act like a lockpick, attaching to and prying open a cell's membrane. The virus then hijacks the cell's inner workings, forcing it to mass produce the virus's genetic material and construct many, many viral replicas. Much like popcorn kernels pushing away the lid of an overfilled pot, the new viruses explode through the cell wall. And the cycle continues with more virus lockpicks on the loose.

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