Photodynamic effectiveness of laser diode combined with ozone to reduce STaphylicoccus aureus biofilm with exogenous chlorophyll of Dracaena angustifolia leaves

Photodynamic inactivation is an effective treatment that uses light irradiation, photosensitizer and oxygen. The aim of this study was to determine photodynamic effectiveness of laser diode combined with ozone to reduce Staphylococcus aureus biofilm using exogenous chlorophyll (Chlo). The chlorophyl...

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Main Authors: S. D. Astuti, N. D. Drantantiyas, A. P. Putra, P. S. Puspita, A. Syahrom, S. Suhariningsih
Format: Article
Language:Russian
Published: Non-profit partnership for development of domestic photodynamic therapy and photodiagnosis "Russian Photodynamic Association" 2019-07-01
Series:Biomedical Photonics
Subjects:
Online Access:https://www.pdt-journal.com/jour/article/view/312
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spelling doaj-633c2adf35f54d01a4f8c329aa4104862021-07-29T08:06:59ZrusNon-profit partnership for development of domestic photodynamic therapy and photodiagnosis "Russian Photodynamic Association"Biomedical Photonics2413-94322019-07-018241310.24931/2413-9432-2019-8-2-4-13167Photodynamic effectiveness of laser diode combined with ozone to reduce STaphylicoccus aureus biofilm with exogenous chlorophyll of Dracaena angustifolia leavesS. D. Astuti0N. D. Drantantiyas1A. P. Putra2P. S. Puspita3A. Syahrom4S. Suhariningsih5Airlangga UniversitySumatera Institute of TechnologyAirlangga UniversitySepuluh Nopember Institute of TechnologyUniversiti Teknologi MalaysiaAirlangga UniversityPhotodynamic inactivation is an effective treatment that uses light irradiation, photosensitizer and oxygen. The aim of this study was to determine photodynamic effectiveness of laser diode combined with ozone to reduce Staphylococcus aureus biofilm using exogenous chlorophyll (Chlo). The chlorophyll was extracted from leave of Dracaena angustifolia. To determine the antibacterial effect of S. aureus biofilm treatments, samples were separated into Chlo, Laser, Chlo+Laser, Ozone, Ozone+Laser, Chlo+Ozone+Laser categories. The data were analyzed using ANOVA test. The result of this study showed that Chlo+Ozone+Laser combine treatment at 20 s exposure of ozone with 4 min of irradiation time lead to 80.26 % reduction of biofilm activity, which was the highest efficacy of all the treatment groups. The combination of laser, chlorophyll and lower ozone concentration increases the effectiveness of photodynamic inactivation.https://www.pdt-journal.com/jour/article/view/312antibacterial photodynamic therapylaser irradiationozonechlorophyllstaphylococcus aureusbiofilm
collection DOAJ
language Russian
format Article
sources DOAJ
author S. D. Astuti
N. D. Drantantiyas
A. P. Putra
P. S. Puspita
A. Syahrom
S. Suhariningsih
spellingShingle S. D. Astuti
N. D. Drantantiyas
A. P. Putra
P. S. Puspita
A. Syahrom
S. Suhariningsih
Photodynamic effectiveness of laser diode combined with ozone to reduce STaphylicoccus aureus biofilm with exogenous chlorophyll of Dracaena angustifolia leaves
Biomedical Photonics
antibacterial photodynamic therapy
laser irradiation
ozone
chlorophyll
staphylococcus aureus
biofilm
author_facet S. D. Astuti
N. D. Drantantiyas
A. P. Putra
P. S. Puspita
A. Syahrom
S. Suhariningsih
author_sort S. D. Astuti
title Photodynamic effectiveness of laser diode combined with ozone to reduce STaphylicoccus aureus biofilm with exogenous chlorophyll of Dracaena angustifolia leaves
title_short Photodynamic effectiveness of laser diode combined with ozone to reduce STaphylicoccus aureus biofilm with exogenous chlorophyll of Dracaena angustifolia leaves
title_full Photodynamic effectiveness of laser diode combined with ozone to reduce STaphylicoccus aureus biofilm with exogenous chlorophyll of Dracaena angustifolia leaves
title_fullStr Photodynamic effectiveness of laser diode combined with ozone to reduce STaphylicoccus aureus biofilm with exogenous chlorophyll of Dracaena angustifolia leaves
title_full_unstemmed Photodynamic effectiveness of laser diode combined with ozone to reduce STaphylicoccus aureus biofilm with exogenous chlorophyll of Dracaena angustifolia leaves
title_sort photodynamic effectiveness of laser diode combined with ozone to reduce staphylicoccus aureus biofilm with exogenous chlorophyll of dracaena angustifolia leaves
publisher Non-profit partnership for development of domestic photodynamic therapy and photodiagnosis "Russian Photodynamic Association"
series Biomedical Photonics
issn 2413-9432
publishDate 2019-07-01
description Photodynamic inactivation is an effective treatment that uses light irradiation, photosensitizer and oxygen. The aim of this study was to determine photodynamic effectiveness of laser diode combined with ozone to reduce Staphylococcus aureus biofilm using exogenous chlorophyll (Chlo). The chlorophyll was extracted from leave of Dracaena angustifolia. To determine the antibacterial effect of S. aureus biofilm treatments, samples were separated into Chlo, Laser, Chlo+Laser, Ozone, Ozone+Laser, Chlo+Ozone+Laser categories. The data were analyzed using ANOVA test. The result of this study showed that Chlo+Ozone+Laser combine treatment at 20 s exposure of ozone with 4 min of irradiation time lead to 80.26 % reduction of biofilm activity, which was the highest efficacy of all the treatment groups. The combination of laser, chlorophyll and lower ozone concentration increases the effectiveness of photodynamic inactivation.
topic antibacterial photodynamic therapy
laser irradiation
ozone
chlorophyll
staphylococcus aureus
biofilm
url https://www.pdt-journal.com/jour/article/view/312
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