03-17-2020, 11:14 AM
A new paper was just published in the New England Journal of Medicine:
https://www.nejm.org/doi/full/10.1056/NE...3?query=RP
Bottom line:
With regards to which material to use, the shortest half-life was for copper
BC
https://www.nejm.org/doi/full/10.1056/NE...3?query=RP
Bottom line:
Quote:Our results indicate that aerosol and fomite (surface) transmission of SARS-CoV-2 is plausible, since the virus can remain viable and infectious in aerosols for hours and on surfaces up to days (depending on the inoculum shed). These findings echo those with SARS-CoV-1, in which these forms of transmission were associated with nosocomial (ED: spread within hospitals) spread and super-spreading events,5 and they provide information for pandemic mitigation efforts.
With regards to which material to use, the shortest half-life was for copper
Quote:SARS-CoV-2 was more stable on plastic and stainless steel than on copper and cardboard, and viable virus was detected up to 72 hours after application to these surfaces (Figure 1A), although the virus titer was greatly reduced (from 103.7 to 100.6 TCID50 per milliliter of medium after 72 hours on plastic and from 103.7 to 100.6 TCID50 per milliliter after 48 hours on stainless steel). ... On copper, no viable SARS-CoV-2 was measured after 4 hours and no viable SARS-CoV-1 was measured after 8 hours. On cardboard, no viable SARS-CoV-2 was measured after 24 hours and no viable SARS-CoV-1 was measured after 8 hours (Figure 1A).
BC
