AI Article Synopsis

  • The study focused on identifying bacteria that produce biofilms in dental caries, highlighting the strain DC-17, which showed strong biofilm-forming abilities and antibiotic resistance.
  • DC-17 synthesized a significant amount of extracellular polymeric substances (EPS), primarily made up of proteins (1.928 mg/mL), carbohydrates (162.3 mg/L), and DNA (4.95 µg/mL), which are essential for biofilm structure and function.
  • Factors like temperature, pH, and sugar concentration affected biofilm production, with optimal conditions found at alkaline pH, 40°C, and 8% sucrose, while the biofilm formed was notably resistant to various antibiotics, particularly pen

Article Abstract

The present work reports with the screening of biofilm-producing bacteria from the dental caries. The dental pathogens showed resistance against various antibiotics and biofilm forming ability at various levels. Among the bacterial strain, DC-17 showed enhanced biofilm production. Extracellular polymeric substance (EPS) was synthesized by the selected bacterial isolate considerably and contributed as the major component of biofilm. EPS composed of eDNA, proteins and lipids. The total protein content of the EPS was found to be 1.928 mg/mL and was the major component than carbohydrate and DNA. Carbohydrate content was 162.3 mg/L and DNA content of EPS was 4.95 μg/mL. These macromolecules interacted in the matrix to develop dynamic and specific interactions to signalling biofilm to differentiating various environments. Also, the isolated bacteria showed resistant against various commercially available antibiotics. The isolates showed more resistance against penicillin (98%) and were sensitive against amoxicillin. Among the factors, temperature, pH and sugar concentration influenced biofilm formation. Biofilm forming ability of the selected bacterial stain was tested at various pH values and alkaline pH was favoured for biofilm production. Biofilm production was found to be maximum at 40 °C and 8% sucrose enhanced biofilm formation. Biofilm formed by DC-17 was resistant against various tested antimicrobials and chemicals.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7569125PMC
http://dx.doi.org/10.1016/j.sjbs.2020.07.020DOI Listing

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