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Virology Mouthwashes could reduce the risk of coronavirus transmission

Results from cell culture experiments show that commercially available preparations have an effect on Sars-Cov-2 viruses.

Sars-Cov-2 viruses can be inactivated using certain commercially available mouthwashes. This was demonstrated in cell culture experiments by virologists from Ruhr-Universität Bochum together with colleagues from Jena, Ulm, Duisburg-Essen, Nuremberg and Bremen. High viral loads can be detected in the oral cavity and throat of some Covid-19 patients. The use of mouthwashes that are effective against Sars-Cov-2 could thus help to reduce the viral load and possibly the risk of coronavirus transmission over the short term. This could be useful, for example, prior to dental treatments. However, mouth rinses are not suitable for treating Covid-19 infections or protecting yourself against catching the virus.

The results of the study are described by the team headed by Toni Meister, Professor Stephanie Pfänder and Professor Eike Steinmann from the Bochum-based Molecular and Medical Virology research group in the Journal of Infectious Diseases, published online on 29 July 2020. A review of laboratory results in clinical trials is pending.

Eight mouthwashes in a cell culture test

The researchers tested eight mouthwashes with different ingredients that are available in pharmacies or drugstores in Germany. They mixed each mouthwash with virus particles and an interfering substance, which was intended to recreate the effect of saliva in the mouth. The mixture was then shaken for 30 seconds to simulate the effect of gargling. They then used Vero E6 cells, which are particularly receptive to Sars-Cov-2, to determine the virus titer. In order to assess the efficacy of the mouthwashes, the researchers also treated the virus suspensions with cell culture medium instead of the mouthwash before adding them to the cell culture.

All of the tested preparations reduced the initial virus titer. Three mouthwashes reduced it to such an extent that no virus could be detected after an exposure time of 30 seconds. Whether this effect is confirmed in clinical practice and how long it lasts must be investigated in further studies.

The authors point out that mouthwashes are not suitable for treating Covid-19. “Gargling with a mouthwash cannot inhibit the production of viruses in the cells,” explains Toni Meister, “but could reduce the viral load in the short term where the greatest potential for infection comes from, namely in the oral cavity and throat – and this could be useful in certain situations, such as at the dentist or during the medical care of Covid-19 patients.”

Clinical studies in progress

The Bochum group is examining the possibilities of a clinical study on the efficacy of mouthwashes on Sars-Cov-2 viruses, during which the scientists want to test whether the effect can also be detected in patients and how long it lasts. Similar studies are already underway in San Francisco; the Bochum team is in contact with the American researchers.

Funding

The work was funded by the European Union as part of the Horizon 2020 programme (grant number 101003555) and by Stiftung Universitätsmedizin Essen.

Original publication

Toni Luise Meister, Yannick Brüggemann, Daniel Todt, Carina Conzelmann, Janis A. Müller, Rüdiger Groß, Jan Münch, Adalbert Krawczyk, Jörg Steinmann, Jochen Steinmann, Stephanie Pfaender, Eike Steinmann: Virucidal efficacy of 1 different oral rinses against SARS-CoV-2, in: Journal of Infectious Diseases, 2020, DOI: 10.1093/infdis/jiaa471

Press contact

Prof. Dr. Eike Steinmann
Department for Molecular & Medical Virology
Faculty of Medicine
Ruhr-Universität Bochum
Germany
Phone: +49 234 32 28189
Email: eike.steinmann@rub.de

Prof. Dr. Stephanie Pfänder
Department for Molecular & Medical Virology
Faculty of Medicine
Ruhr-Universität Bochum
Germany
Phone: +49 234 32 29278
Email: stephanie.pfaender@rub.de

Toni Luise Meister
Department for Molecular & Medical Virology
Faculty of Medicine
Ruhr-Universität Bochum
Germany
Phone: +49 234 32 26465
Email: toni.meister@rub.de

Published

Monday
10 August 2020
9:13 am

By

Julia Weiler (jwe)

Translated by

Lund Languages

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