bioRxiv · 10.1101/2025.09.30.679206
Viral transport in evaporating sessile model respiratory droplets
Abstract
Viral particles, or virions, may remain infectious in the dry residue of respiratory droplets for times as long as hours. This is counterintuitive, since salt concentration increases dramatically as the drops water evaporates, making the drop a harsh environment for virions. It has been hypothesized that the drop components (mainly salt and the glycoprotein mucin) segregate during the evaporation process, with virions being transported away from salt deposits. This would protect them from the salts damaging effects. Thus, understanding where virions reside in a drop residue is essential to disentangle the physico-chemical mechanisms that drive their inactivation. However, determining the virion location in an environment as heterogeneous and complex as a respiratory drop is challenging. Here we show experimentally that virions in the drops dry residue are found mainly forming aggregates in protein-rich regions, outside salt crystals. The mechanism yielding the observed viral spatial distribution can be found in the internal flow phenomena within the droplet, which are described using numerical simulations. We anticipate our results to be relevant to explain the discrepancies in the infectivity decay rates measured in respiratory drops between previous reported studies.
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Martinez-Puig, J., de la Torre Luque, C., Arbesu Nieto, C., Hoekstra, P. I., Usera, F., Martin Jouve, B., de la Encina, A., Bartolome, T., Sanz, M., Almazan, F., Ona, A., Marin, A., Rodriguez Rodriguez, J.. 2025-10-02. Viral transport in evaporating sessile model respiratory droplets. https://doi.org/10.1101/2025.09.30.679206
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