Department of Dental Materials and Prosthodontics, São Paulo State University (UNESP), School of Dentistry, Araraquara, Brazil.
Department of Cariology, Operative Dentistry & Dental Public Health, Indiana University School of Dentistry, Indianapolis, IN, USA.
Biofouling. 2021 Oct-Nov;37(9-10):1006-1021. doi: 10.1080/08927014.2021.2001645. Epub 2021 Nov 18.
Fluconazole-sensitive (CaS) and -resistant (CaR) were grown as single-species and dual-species biofilms with (Lc) and (Lr). Single-species Lc and Lr were also evaluated. Biofilm analysis included viable plate counts, the extracellular matrix components, biomass, and structural organization. Lc reduced the viability of CaS, water-soluble polysaccharides, and eDNA in CaS + Lc biofilm. Lc biofilm presented more eDNA than CaS. The total biomass of CaS + Lc biofilm was higher than the single-species biofilms. The viability of Lc and Lr was reduced by CaR dual-species biofilms. The total and insoluble biomass in CaS + Lr was higher than in single-species CaS biofilms. Lc hindered the growth of CaS, and their association hampered matrix components linked to the structural integrity of the biofilm. These findings allow understanding of how the implementation of probiotics influences the growth of biofilms and thereby helps with the development of novel approaches to control these biofilms.
氟康唑敏感(CaS)和抗性(CaR)分别与(Lc)和(Lr)形成单种和双种生物膜。还评估了单种 Lc 和 Lr。生物膜分析包括活菌平板计数、细胞外基质成分、生物量和结构组织。Lc 降低了 CaS、水溶性多糖和 CaS+Lc 生物膜中 eDNA 的活力。Lc 生物膜中的 eDNA 比 CaS 多。CaS+Lc 生物膜的总生物量高于单种生物膜。CaR 双种生物膜降低了 Lc 和 Lr 的活力。CaS+Lr 中的总生物量和不溶性生物量高于单种 CaS 生物膜。Lc 阻碍了 CaS 的生长,它们的结合阻碍了与生物膜结构完整性相关的基质成分。这些发现有助于理解益生菌的应用如何影响生物膜的生长,从而有助于开发控制这些生物膜的新方法。