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RESEARCH PRODUCT

In vitro anti-biofilm activity of Boswellia spp. oleogum resin essential oils

Vincenzo ArizzaLorenzo CamardaV. Di StefanoDomenico SchillaciTalya L. Dayton

subject

Staphylococcus aureusTetrazolium SaltsMicrobial Sensitivity Testsmedicine.disease_causeApplied Microbiology and BiotechnologyBacterial Adhesionlaw.inventionMicrobiologylawStaphylococcus epidermidisCandida albicansmedicineOils VolatileStaphylococcus epidermidisBoswelliaCandida albicansBoswelliaBoswellia C albicans biofilms essential oils staphylococcal biofilmsEssential oilMicrobial ViabilitybiologyStaining and LabelingBiofilmbiochemical phenomena metabolism and nutritionbiology.organism_classificationCorpus albicansGrowth InhibitorsThiazolesStaphylococcus aureusBiofilmsBoswellia papyrifera

description

Aims:  To evaluate the anti-biofilm activity of the commercially available essential oils from two Boswellia species. Methods and Results:  The susceptibility of staphylococcal and Candida albicans biofilms was determined by methyltiazotetrazolium (MTT) staining. At concentrations ranging from 217·3 μg ml−1 (25% v/v) to 6·8 μg ml−1 (0·75% v/v), the essential oil of Boswellia papyrifera showed considerable activity against both Staphylococcus epidermidis DSM 3269 and Staphylococcus aureus ATCC 29213 biofilms. The anti-microbial efficacy of this oil against S. epidermidis RP62A biofilms was also tested using live/dead staining in combination with fluorescence microscopy, and we observed that the essential oil of B. papyrifera showed an evident anti-biofilm effect and a prevention of adhesion at sub-MIC concentrations. Boswellia rivae essential oil was very active against preformed C. albicans ATCC 10231 biofilms and inhibited the formation of C. albicans biofilms at a sub-MIC concentration. Conclusions:  Essential oils of Boswellia spp. could effectively inhibit the growth of biofilms of medical relevance. Significance and Impact of the Study: Boswellia spp. essential oils represent an interesting source of anti-microbial agents in the development of new strategies to prevent and treat biofilms.

10.1111/j.1472-765x.2008.02469.xhttp://hdl.handle.net/10447/39229