OBJECTIVE: To develop an in vitro model for real-time monitoring of endodontic biofilm growth and evaluate the ex vivo effect of antibiotics on biofilm growth. MATERIAL AND METHODS: Root canal samples were taken from 40 patients and inoculated into 96-well plates in a system that measures biofilm growth through electrical impedance. Biofilm bacterial composition at the genus and species level was analyzed by Illumina sequencing. ANCOM-BC corrected data were used to compare bacterial composition after antibiotic treatment through compositional analysis, and to compare microbiological with clinical data. RESULTS: The stationary phase was reached at 8âhours. The biofilm formed had a similar bacterial composition to the inoculum, and Enterococcus faecalis was virtually absent from the samples. The bacterial composition and the effect of antibiotics were sample-dependent. Metronidazole was the antibiotic that most inhibited biofilm formation and azithromycin the one that inhibited it in the highest percentage of cases. The antibiotic effect could not be related to the biofilm original bacterial composition. CONCLUSIONS: The impedance system allowed real-time monitoring of endodontic biofilm formation, and we propose it as a model for ex vivo evaluation of the whole biofilm susceptibility to antimicrobials, as opposed to evaluating antibiotic sensitivity of specific bacterial isolates.
Ex vivo evaluation of antibiotic sensitivity in samples from endodontic infections.
体外评价根管感染样本的抗生素敏感性
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作者:Villanueva-Castellote Ãlvaro, Llena Puy Carmen, Cerda-Diéguez Miguel, Mira Ãlex, Ferrer MarÃa D
| 期刊: | Journal of Oral Microbiology | 影响因子: | 5.500 |
| 时间: | 2023 | 起止号: | 2022 Dec 22; 15(1):2160536 |
| doi: | 10.1080/20002297.2022.2160536 | ||
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