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Whirlpools are mostly associated with death and danger on the high seas, but these glowing vortexes are working to help humanity. One of the most difficult steps in creating diagnostic tests is purifying samples to remove unwanted particles while concentrating biomarkers of interest.
Due to the specific wavelengths of vibrations used to create these whirlpools, they efficiently trap cells, bacteria and other larger bioparticles found in saliva while leaving antibodies and viruses free to flow forward through multiple biosensing chambers.
Created by Tony Jun Huang, the William Bevan Distinguished Professor of Mechanical Engineering and Materials Science at Duke, and his Acoustofluidics Lab, they represent the first step in a new single-chip diagnostic prototype that can detect viral RNA and a full spectrum of antibodies to enhance our ability to navigate and neutralize future pandemics.
The research is published in the journal Science Advances.
More information:
Jiao Qian et al, Rapid and comprehensive detection of viral antibodies and nucleic acids via an acoustofluidic integrated molecular diagnostics chip: AIMDx, Science Advances (2025). DOI: 10.1126/sciadv.adt5464
Provided by
Duke University
Citation:
Tiny vortexes help detect dangerous viruses (2025, January 20)
retrieved 20 January 2025
from https://phys.org/news/2025-01-tiny-vortexes-dangerous-viruses.html
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