Environmental bacteria produce abundant and diverse antibiofilm compounds.

J T Farmer, A V Shimkevitch, P S Reilly, K D Mlynek, K S Jensen, M T Callahan, K L Bushaw-Newton, J B Kaplan
Author Information
  1. J T Farmer: Department of Biology, American University, Washington, DC, USA.

Abstract

AIMS: The aim of this study was to isolate novel antibiofilm compounds produced by environmental bacteria.
METHODS AND RESULTS: Cell-free extracts were prepared from lawns of bacteria cultured on agar. A total of 126 bacteria isolated from soil, cave and river habitats were employed. Extracts were tested for their ability to inhibit Staphylococcus aureus biofilm in a 96-well microtitre plate assay. A total of 55/126 extracts (44%) significantly inhibited Staph. aureus biofilm. Seven extracts were selected for further analysis. The antibiofilm activities in all seven extracts exhibited unique patterns of molecular mass, chemical polarity, heat stability and spectrum of activity against Staph. aureus, Staphylococcus epidermidis and Pseudomonas fluorescens, suggesting that these seven antibiofilm activities were mediated by unique chemical compounds with different mechanisms of action.
CONCLUSIONS: Environmental bacteria produce abundant and diverse antibiofilm compounds.
SIGNIFICANCE AND IMPACT OF THE STUDY: Screening cell-free extracts is a useful method for identifying secreted compounds that regulate biofilm formation. Such compounds may represent a novel source of antibiofilm agents for technological development.

Keywords

Grants

  1. AI097182/NIAID NIH HHS

MeSH Term

Anti-Bacterial Agents
Bacteria
Biofilms
Environmental Microbiology
Staphylococcus aureus

Chemicals

Anti-Bacterial Agents

Word Cloud

Created with Highcharts 10.0.0antibiofilmcompoundsbacteriaextractsbiofilmStaphylococcusnovelenvironmentalANDtotalsoilcaveriveraureusStaph aureusactivitiessevenuniquechemicalEnvironmentalproduceabundantdiverseAIMS:aimstudyisolateproducedMETHODSRESULTS:Cell-freepreparedlawnsculturedagar126isolatedhabitatsemployedExtractstestedabilityinhibit96-wellmicrotitreplateassay55/12644%significantlyinhibitedSevenselectedanalysisexhibitedpatternsmolecularmasspolarityheatstabilityspectrumactivityepidermidisPseudomonas fluorescenssuggestingmediateddifferentmechanismsactionCONCLUSIONS:SIGNIFICANCEIMPACTOFTHESTUDY:Screeningcell-freeusefulmethodidentifyingsecretedregulateformationmayrepresentsourceagentstechnologicaldevelopmentscreen

Similar Articles

Cited By