Gutiérrez Diana Marcela, Castillo Yormaris, Ibarra-Avila Humberto, López Mónica, Orozco Juan C, Lafaurie Gloria I, Castillo Diana Marcela
Unidad de Investigación Básica Oral (UIBO), Vicerrectoría de investigaciones, Facultad de Odontología, Universidad El Bosque, Bogotá D.C, Colombia.
Centro de Microscopia-μ-Core I Vicerrectoría de Investigación y Creación, Universidad de los Andes, Bogotá D.C, Colombia.
J Basic Microbiol. 2022 Jan;62(1):13-21. doi: 10.1002/jobm.202100533. Epub 2021 Dec 7.
An in vitro model for the formation of an Enterococcus faecalis endodontic biofilm under nutritional restriction was established, simulating clinical conditions for the evaluation of antimicrobial substances. Biofilm formation in dentin was standardized using root quarters incubated with E. faecalis ATCC 29212 at 37°C without nutritional changes. Biofilms were evaluated at 7, 14, and 30 days, counting bacterial colony-forming units using conventional culture and verified scanning electron microscopy. Bacterial viability and biovolume were determined with confocal laser microscopy. Colonization of E. faecalis and biofilm formation on the dentinal surface was confirmed after 7 and 14 days, respectively. Microorganism colonization was homogeneous over the entire root surface at each time point, without significant differences in the viability percentage and biovolume. On the contrary, a decrease in viability and an increase in biovolume were observed when the time was increased. Compared with other incubation times, 14 days was found to be the best time for the establishment of the biofilm in terms of biovolume and bacterial viability. This in vitro model for the formation of endodontic biofilm will allow future evaluation of the efficacy of antimicrobial substances with a more adequate clinical approach.
建立了一种在营养限制条件下粪肠球菌牙髓生物膜形成的体外模型,模拟临床条件以评估抗菌物质。使用与粪肠球菌ATCC 29212在37°C下孵育的牙根片段标准化牙本质中的生物膜形成,且不改变营养条件。在第7、14和30天评估生物膜,使用传统培养法计数细菌集落形成单位,并通过扫描电子显微镜进行验证。用共聚焦激光显微镜测定细菌活力和生物体积。粪肠球菌在牙本质表面的定植和生物膜形成分别在第7天和第14天后得到证实。在每个时间点,微生物在整个牙根表面的定植是均匀的,活力百分比和生物体积没有显著差异。相反,随着时间增加,观察到活力下降和生物体积增加。就生物体积和细菌活力而言,发现14天是建立生物膜的最佳时间。这种牙髓生物膜形成的体外模型将允许未来采用更合适的临床方法评估抗菌物质的疗效。