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Time-lapse confocal microscopy to study in vitro Streptococcus mutans surface colonization.

J T F WingMichael A L HayashiA F RedissiM M VickermanL M A TenutaJ C FennoA H Rickard
Published in: Letters in applied microbiology (2024)
The cariogenicity of Streptococcus mutans relates to its ability to form biofilms on dental surfaces. The aim of this work was to develop a flowcell system compatible with time-lapse confocal microscopy to compare the adhesion and accumulation of S. mutans cells on surfaces in unsupplemented media against media containing sucrose or sucralose (a non-metabolized sweetener) over a short period of time. Fluorescent S. mutans 3209/pVMCherry was suspended in un-supplemented media or media supplemented with 1% sucrose or 1% sucralose and passed through a 3D printed flowcell system. Flowcells were imaged over 60 minutes using a confocal microscope. Image analysis was performed including a newly developed object-movement-based method to measure biomass adhesion. S. mutans 3209/pVMCherry grown in 1% sucrose-supplemented media formed small, dense, relatively immobile clumps in the flowcell system measured by biovolume, surface area, and median object centroid movement. Sucralose-supplemented and un-supplemented media yielded large, loose, mobile aggregates. Architectural metrics and per-object movement were significantly different (p < 0.05) when comparing sucrose-supplemented media to either unsupplemented or sucralose-supplemented media. These results demonstrate the utility of a flowcell system compatible with time-lapse confocal microscopy and image analysis when studying initial biofilm formation and adhesion under different nutritional conditions.
Keyphrases
  • biofilm formation
  • candida albicans
  • pseudomonas aeruginosa
  • staphylococcus aureus
  • escherichia coli
  • cystic fibrosis
  • induced apoptosis
  • quantum dots
  • endoplasmic reticulum stress
  • single molecule