The penetration effect of HMME-mediated low-frequency and low-intensity ultrasound against the Staphylococcus aureus bacterial biofilm
Abstract Background The purpose of this study was to observe the effect of hematoporphyrin monomethyl ether (HMME)-mediated low-frequency and low-intensity ultrasound on mature and stable Staphylococcus aureus (S. aureus) biofilms under different ultrasound parameters. Methods The biofilm was formed...
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doaj-0900496affb54e3b9f01bd957e766a5a2020-11-25T03:40:11ZengBMCEuropean Journal of Medical Research2047-783X2020-10-0125111110.1186/s40001-020-00452-zThe penetration effect of HMME-mediated low-frequency and low-intensity ultrasound against the Staphylococcus aureus bacterial biofilmTao Wang0Wei Ma1Zhinan Jiang2Liangjia Bi3Department of Stomatology, The Fourth Affiliated Hospital, Harbin Medical UniversityDepartment of Stomatology, The Fourth Affiliated Hospital, Harbin Medical UniversityDepartment of Periodontics, WuHan First Stomatological HospitalDepartment of Stomatology, The Fourth Affiliated Hospital, Harbin Medical UniversityAbstract Background The purpose of this study was to observe the effect of hematoporphyrin monomethyl ether (HMME)-mediated low-frequency and low-intensity ultrasound on mature and stable Staphylococcus aureus (S. aureus) biofilms under different ultrasound parameters. Methods The biofilm was formed after 48-h culture with stable concentration of bacterial solution. Different types of ultrasound and time were applied to the biofilm, and the ultrasonic type and time of our experiments were determined when the biofilm was not damaged. The penetration effects of low-frequency and low-intensity ultrasound were decided by the amount of HMME that penetrated into the biofilm which was determined by fluorescence spectrometry. Results The destruction of biofilms by pulse waveform was the strongest. Sinusoidal low-frequency and low-intensity ultrasound can enhance the biofilm permeability. For a period of time after the ultrasound was applied, the biofilm permeability increased, however, changes faded away over time. Conclusions Low-frequency and low-intensity sinusoidal ultrasound significantly increased the permeability of the biofilms, which was positively correlated with the time and the intensity of ultrasound. Simultaneous action of ultrasound and HMME was the most effective way to increase the permeability of the biofilms.http://link.springer.com/article/10.1186/s40001-020-00452-zLow-frequency and low-intensitySinusoidal ultrasoundStaphylococcus aureusBiofilmPermeability |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Tao Wang Wei Ma Zhinan Jiang Liangjia Bi |
spellingShingle |
Tao Wang Wei Ma Zhinan Jiang Liangjia Bi The penetration effect of HMME-mediated low-frequency and low-intensity ultrasound against the Staphylococcus aureus bacterial biofilm European Journal of Medical Research Low-frequency and low-intensity Sinusoidal ultrasound Staphylococcus aureus Biofilm Permeability |
author_facet |
Tao Wang Wei Ma Zhinan Jiang Liangjia Bi |
author_sort |
Tao Wang |
title |
The penetration effect of HMME-mediated low-frequency and low-intensity ultrasound against the Staphylococcus aureus bacterial biofilm |
title_short |
The penetration effect of HMME-mediated low-frequency and low-intensity ultrasound against the Staphylococcus aureus bacterial biofilm |
title_full |
The penetration effect of HMME-mediated low-frequency and low-intensity ultrasound against the Staphylococcus aureus bacterial biofilm |
title_fullStr |
The penetration effect of HMME-mediated low-frequency and low-intensity ultrasound against the Staphylococcus aureus bacterial biofilm |
title_full_unstemmed |
The penetration effect of HMME-mediated low-frequency and low-intensity ultrasound against the Staphylococcus aureus bacterial biofilm |
title_sort |
penetration effect of hmme-mediated low-frequency and low-intensity ultrasound against the staphylococcus aureus bacterial biofilm |
publisher |
BMC |
series |
European Journal of Medical Research |
issn |
2047-783X |
publishDate |
2020-10-01 |
description |
Abstract Background The purpose of this study was to observe the effect of hematoporphyrin monomethyl ether (HMME)-mediated low-frequency and low-intensity ultrasound on mature and stable Staphylococcus aureus (S. aureus) biofilms under different ultrasound parameters. Methods The biofilm was formed after 48-h culture with stable concentration of bacterial solution. Different types of ultrasound and time were applied to the biofilm, and the ultrasonic type and time of our experiments were determined when the biofilm was not damaged. The penetration effects of low-frequency and low-intensity ultrasound were decided by the amount of HMME that penetrated into the biofilm which was determined by fluorescence spectrometry. Results The destruction of biofilms by pulse waveform was the strongest. Sinusoidal low-frequency and low-intensity ultrasound can enhance the biofilm permeability. For a period of time after the ultrasound was applied, the biofilm permeability increased, however, changes faded away over time. Conclusions Low-frequency and low-intensity sinusoidal ultrasound significantly increased the permeability of the biofilms, which was positively correlated with the time and the intensity of ultrasound. Simultaneous action of ultrasound and HMME was the most effective way to increase the permeability of the biofilms. |
topic |
Low-frequency and low-intensity Sinusoidal ultrasound Staphylococcus aureus Biofilm Permeability |
url |
http://link.springer.com/article/10.1186/s40001-020-00452-z |
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