January 13, 2022
Masks, social distancing, proper hygiene, and ventilation can help reduce the transmission of COVID-19 in public places—but even with these measures, scientists have detected airborne SARS-CoV-2 in indoor settings, EurekAlert reports.
Now, researchers from Yale University School of Engineering and Applied Science and Yale University School of Public Health—working on behalf of the American Chemical Society—say they have developed a passive air sampler clip that can help assess personal exposure to SARS-CoV-2 that could be especially helpful for workers in high-risk settings, such as restaurants or healthcare facilities.
Reporting in the January 12 edition of ACS’ Environmental Science & Technology Letters, the researchers note that COVID-19 is primarily transmitted through the inhalation of virus-laden aerosols and respiratory droplets that infected individuals expel by coughing, sneezing, speaking, or breathing.
To date, active air sampling devices to detect airborne SARS-CoV-2 have been used in indoor settings; however, these monitors are typically large, expensive, non-portable and require electricity. To better understand personal exposures to the virus, lead author Krystal Pollitt and colleagues wanted to develop a small, lightweight, inexpensive and wearable device that doesn’t require a power source.
The researchers developed a wearable passive air sampler, known as the Fresh Air Clip, that continually adsorbs virus-laden aerosols on a polydimethylsiloxane (PDMS) surface. The team tested the air sampler in a rotating drum in which they generated aerosols containing a surrogate virus, a bacteriophage with similar properties to SARS-CoV-2. They detected virus on the PDMS sampler using the polymerase chain reaction (PCR), showing that the device could be used to reliably estimate airborne virus concentrations.
Although the Fresh Air Clip has not yet been commercialized, these results indicate that it could serve as a semiquantitative screening tool for assessing personal exposure to SARS-CoV-2, as well as help identify high-risk areas for indoor exposure, the researchers say.
Research contact: @EurekAlert