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   Evaluation of Antimicrobial Properties of Conventional Poly(Methyl Methacrylate) Denture Base Resin Materials Containing Hydrothermally Synthesised Anatase TiO_2 Nanotubes against Cariogenic Bacteria and Candida albicans  
   
نویسنده abdulrazzaq naji sahar ,jafarzadeh kashi tahereh sadat ,pourhajibagher maryam ,behroozibakhsh marjan ,masaeli reza ,bahador abbas
منبع iranian journal of pharmaceutical research - 2018 - دوره : 17 - شماره : Special Issue 2 - صفحه:161 -172
چکیده    The purpose of this study was to investigate the antimicrobial properties of a conventional poly methyl methacrylate (pmma) modified with hydrothermally synthesised titanium dioxide nanotubes (tnts). minimum inhibitory concentration (mic), minimum bactericidal concentration (mbc), and minimum fungicidal concentrations (mfc) for planktonic cells of the tio_2 nanotubes solution against lactobacillus acidophilus, streptococcus mutans andcandida albicans were determined. the powder of conventional acrylic resin was modifiedusing 2.5% and 5% by weight synthesised titanium dioxide (tio_2) nanotubes, and rectangular- shaped specimens (10 mm × 10 mm × 3 mm) were fabricated. the antimicrobial properties of ultraviolet (uv) and non-uv irradiated modified, and non-modified acrylic resins were evaluated using the estimation of planktonic cell count and biofilm formation of the three microorganisms mentioned above. the data were analysed by one-way analysis of variance (anova), followed by a post-hoc tukey’s test at a significance level of 5%. mic, for streptococcus. mutans, lactobacillus. acidophilus, and candida. albicans, mbc for s. mutans and l. acidophilus and mfc for candida. albicans were obtained more than 2100 µg/ml. the results of this study indicated a significant reduction in both planktonic cell count and biofilm formation of modified uv-activated acrylic specimens compared with the control group (p = 0.00). according to the results of the current study, it can be concluded that pmma/ tio_2 nanotube composite can be considered as a promising new material for antimicrobial approaches.
کلیدواژه Titania nanotubes; Denture base resin; Antimicrobial properties; Biofilm; Cariogenic bacteria; Candida albicans.
آدرس college of health and medical technology, foundation of technical education, Iraq. tehran university of medical sciences (ic-tums), international campus, school of dentistry, department of dental biomaterials, Iran, tehran university of medical sciences, school of dentistry, department of dental biomaterials, Iran. tehran university of medical sciences, dental researchcenter, dentistry research institute, iran, tehran university of medical sciences, dental research center, dentistry research institute, Iran. tehran university of medical sciences, dental implant research center, dentistry research institute, iran. tehran university of medical sciences, school of medicine, department of microbiology, iran, tehran university of medical sciences, school of dentistry, department of dental biomaterials, Iran. tehran university of medical sciences, research center for science and technology in medicine, iran, tehran university of medical sciences, school of dentistry, department of dental biomaterials, Iran. tehran university of medical sciences, research center for science and technology in medicine, iran, tehran university of medical sciences, dental research center, dentistry research institute, Iran. tehran university of medical sciences, school of medicine, department of microbiology, iran
 
     
   
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