Contamination of dental unit waterlines (DUWL) with heterotrophic bacteria can cause problems in immune compromised patients (aged, tumor and organ transplantation-patients). We focused on the use of low-concentrated ozonized water (OZW) as the biofilm formation restraint system for DUWL. Here, we examined the effects of low-concentrated OZW on the growth of bacteria and related biofilm formation and harmfulness to dental unit components (DUCs) in vitro. Objectives To evaluate the bactericidal effects of OZW on biofilms in DUWL and DUC in vitro. Methods Low-concentrated OZW (0.4 mg/L) was generated using an OZS-PTDX generator. Heterotrophic bacterial biofilms in old DUWL tubes and Candia albicans solution (control microbe) were treated wit...
Bacterial contamination of dental unit waterlines (DUWLs) was evaluated by using ATP-bioluminescence...
Ozone is a known oxidant present in the atmosphere and is commercially produced by simple ozonizer m...
Aim: to determine the antibacterial effect of 0.05 ppm ozonated water on oral S. aureus, S. mutans, ...
Contamination of dental unit waterlines (DUWL) with heterotrophic bacteria can cause problems in imm...
The purpose of this study was to evaluate the antimicrobial effectiveness and dental applications of...
The contamination of dental unit waterlines (DUWLs) as a result of biofilms that adhere to the inner...
Objectives: Ozone has been used as an alternative method for the decontamination of water, food, equ...
Biofilms are well-organized communities of cooperating microorganisms that can include bacteria, alg...
High concentrations of water-borne organisms cause multiple public health problems. Contamination of...
Microbial biofilms located on the lumen surface of dental unit water lines have resulted in the per...
SummaryObjectivesOzone has been used as an alternative method for the decontamination of water, food...
Water delivered by dental units during routine dental practice is densely contaminated by bacteria. ...
Biofilms are well-organized communities of cooperating microorganisms that can include bacteria, alg...
Application of ozone is recommended for sterilisation in dental procedures. This study explored the ...
Output water from dental unit waterlines (DUWLs) may be a potential source of infection for both den...
Bacterial contamination of dental unit waterlines (DUWLs) was evaluated by using ATP-bioluminescence...
Ozone is a known oxidant present in the atmosphere and is commercially produced by simple ozonizer m...
Aim: to determine the antibacterial effect of 0.05 ppm ozonated water on oral S. aureus, S. mutans, ...
Contamination of dental unit waterlines (DUWL) with heterotrophic bacteria can cause problems in imm...
The purpose of this study was to evaluate the antimicrobial effectiveness and dental applications of...
The contamination of dental unit waterlines (DUWLs) as a result of biofilms that adhere to the inner...
Objectives: Ozone has been used as an alternative method for the decontamination of water, food, equ...
Biofilms are well-organized communities of cooperating microorganisms that can include bacteria, alg...
High concentrations of water-borne organisms cause multiple public health problems. Contamination of...
Microbial biofilms located on the lumen surface of dental unit water lines have resulted in the per...
SummaryObjectivesOzone has been used as an alternative method for the decontamination of water, food...
Water delivered by dental units during routine dental practice is densely contaminated by bacteria. ...
Biofilms are well-organized communities of cooperating microorganisms that can include bacteria, alg...
Application of ozone is recommended for sterilisation in dental procedures. This study explored the ...
Output water from dental unit waterlines (DUWLs) may be a potential source of infection for both den...
Bacterial contamination of dental unit waterlines (DUWLs) was evaluated by using ATP-bioluminescence...
Ozone is a known oxidant present in the atmosphere and is commercially produced by simple ozonizer m...
Aim: to determine the antibacterial effect of 0.05 ppm ozonated water on oral S. aureus, S. mutans, ...