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Copper Surfaces May Inhibit Influenza A Transmission

sharon sanders

Editor-in-Chief & President
Copper Surfaces May Inhibit Influenza A Transmission
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Researchers have determined that copper surfaces are significantly better than stainless steel at protecting against influenza A exposure. They report their findings in the April 2007 issue of the journal Applied and Environmental Microbiology.

Influenza A is a viral pathogen responsible for high mortality rates worldwide. The virus is easily transferred and can survive on a range of environmental surfaces. Previous studies have confirmed antimicrobial properties in copper against pathogenic bacteria, but antiviral activity has yet to be tested.

In the study influenza A particles were exposed to copper and stainless steel surfaces and incubated at 71.6 degrees Fahrenheit and 50 to 60% relative humidity. After 6 hours of exposure to copper only 500 virus particles were active, while 500,000 remained viable after 24 hours of incubation on stainless steel.

"The current study shows that copper surfaces may contribute to the number of control barriers able to reduce transmission of the virus, particularly in facilities, such as schools and health care units, where viral contamination has the ability to cause serious infection," say the researchers.

(J.O. Noyce, H. Michels, C.W. Keevil. 2007. Inactivation of influenza A virus on copper versus stainless steel surfaces. Applied and Environmental Microbiology, 73. 8: 2748-2750).​
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Re: Copper Surfaces May Inhibit Influenza A Transmission

what's the reason ?
I'd like to see the electron-microscope pictures, how the virus
sits on copper and steel.
And several strains, not only PR/8/34.

The PR/8/34 strain is pretty much spherical while
H5N1 is pretty much filamentous.

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The mechanism for reduced infectivity after exposure to copper is not known at this point, although results from tests done with methicillin-resistant Straphylococcus aureus suggest that genomic material is degraded (same authors, submitted).Evidence to date has demonstrated that copper ions have the ability to disorder DNA by binding to and cross-linking between and within strands [Rifkind...,1976].If similar mechanisms occurred with the negative sense RNA genome in influenza A virus, then viral replication could be inhibited by copper-linked RNA damage
 
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