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Concurrent Quantification of Cellular and Extracellular Components of Biofilms
Authors:Sharukh S Khajotia  Kristin H Smart  Mpala Pilula  David M Thompson
Institution:1.Department of Dental Materials, College of Dentistry, University of Oklahoma Health Sciences Center;2.Department of Biostatistics and Epidemiology, College of Public Health, University of Oklahoma Health Sciences Center;3.Department of Biological Sciences, School of Mathematics and Natural Sciences, The Copperbelt University
Abstract:Confocal laser scanning microscopy (CLSM) is a powerful tool for investigation of biofilms. Very few investigations have successfully quantified concurrent distribution of more than two components within biofilms because: 1) selection of fluorescent dyes having minimal spectral overlap is complicated, and 2) quantification of multiple fluorochromes poses a multifactorial problem. Objectives: Report a methodology to quantify and compare concurrent 3-dimensional distributions of three cellular/extracellular components of biofilms grown on relevant substrates. Methods: The method consists of distinct, interconnected steps involving biofilm growth, staining, CLSM imaging, biofilm structural analysis and visualization, and statistical analysis of structural parameters. Biofilms of Streptococcus mutans (strain UA159) were grown for 48 hr on sterile specimens of Point 4 and TPH3 resin composites. Specimens were subsequently immersed for 60 sec in either Biotène PBF (BIO) or Listerine Total Care (LTO) mouthwashes, or water (control group; n=5/group). Biofilms were stained with fluorochromes for extracellular polymeric substances, proteins and nucleic acids before imaging with CLSM. Biofilm structural parameters calculated using ISA3D image analysis software were biovolume and mean biofilm thickness. Mixed models statistical analyses compared structural parameters between mouthwash and control groups (SAS software; α=0.05). Volocity software permitted visualization of 3D distributions of overlaid biofilm components (fluorochromes). Results: Mouthwash BIO produced biofilm structures that differed significantly from the control (p<0.05) on both resin composites, whereas LTO did not produce differences (p>0.05) on either product. Conclusions: This methodology efficiently and successfully quantified and compared concurrent 3D distributions of three major components within S. mutans biofilms on relevant substrates, thus overcoming two challenges to simultaneous assessment of biofilm components. This method can also be used to determine the efficacy of antibacterial/antifouling agents against multiple biofilm components, as shown using mouthwashes. Furthermore, this method has broad application because it facilitates comparison of 3D structures/architecture of biofilms in a variety of disciplines.
Keywords:Immunology  Issue 82  Extracellular Matrix  Streptococcus mutans  Dental Materials  Fluorescent Dyes  Composite Resins  Microscopy  Confocal  Permanent  Biofilms  Microbiological Phenomena  Streptococcus mutans  3-dimensional structure  confocal laser scanning microscopy  fluorescent stains  dental biomaterials  dental resin composites  biofilm structural analysis  image analysis  image reconstruction
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