Literature DB >> 32479089

Synergy between Sophorolipid Biosurfactant and SDS Increases the Efficiency of P. aeruginosa Biofilm Disruption.

Bac V G Nguyen, Toshiki Nagakubo, Masanori Toyofuku, Nobuhiko Nomura, Andrew S Utada.   

Abstract

Biofilms are communities of bacteria encased in self-secreted extracellular polymeric substances (EPS) that adhere stubbornly to submerged surfaces. Once established, these communities can cause serious chronic illnesses in medical settings, while they can promote corrosion and biofouling in industrial settings. Due to the difficulty of their removal, strongly oxidizing chemicals and detergents can be used to degrade and remove biofilms by killing the cells and degrading the matrix; however, the choice of compounds is limited in delicate environments due to the potential damage they may cause. In the case of detergents, most are synthesized from nonrenewable petrochemicals that have a degree of aquatic toxicity. There is a growing need to identify and characterize alternatives to synthetic surfactants. Biosurfactants, which are surfactants produced by microorganisms, are a promising alternative since they can be synthesized from renewable resources, have low environmental toxicity, and have been shown to have higher degrees of specificity in the mechanism of action. Sophorolipids are a class of glycolipid surfactants produced by yeast that have demonstrated great promise due to large yields from renewable feedstocks and for antimicrobial properties; however, the effect of the application of sophorolipids to Gram-negative bacterial biofilms has not been well studied. We investigate the antibiofilm properties of sophorolipids by demonstrating its ability to cause the catastrophic disruption of Pseudomonas aeruginosa PAO1 biofilms in microfluidic channels. We show that while sophorolipids inflict little damage to the bacteria, they weaken the EPS biofilm matrix, leading to surface-detachment and breakup of the biofilm. Furthermore, we find that sophorolipids act cooperatively with the widely used surfactant, sodium dodecyl sulfate. When combined, concentrations ∼100-fold lower than the minimum effective concentration, when used independently, recover potency. Biosurfactants are typically expensive to produce, thus our work demonstrates a means to improve efficacy while simultaneously reducing both cost and the amount of environmentally harmful substances used.

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Year:  2020        PMID: 32479089     DOI: 10.1021/acs.langmuir.0c00643

Source DB:  PubMed          Journal:  Langmuir        ISSN: 0743-7463            Impact factor:   3.882


  5 in total

1.  Biosurfactants as Anticancer Agents: Glycolipids Affect Skin Cells in a Differential Manner Dependent on Chemical Structure.

Authors:  Simms A Adu; Matthew S Twigg; Patrick J Naughton; Roger Marchant; Ibrahim M Banat
Journal:  Pharmaceutics       Date:  2022-02-04       Impact factor: 6.321

Review 2.  Sophorolipids-Bio-Based Antimicrobial Formulating Agents for Applications in Food and Health.

Authors:  Wei Yan Cho; Jeck Fei Ng; Wei Hsum Yap; Bey Hing Goh
Journal:  Molecules       Date:  2022-08-29       Impact factor: 4.927

3.  Synthetic and biological surfactant effects on freshwater biofilm community composition and metabolic activity.

Authors:  Stephanie P Gill; William R Hunter; Laura E Coulson; Ibrahim M Banat; Jakob Schelker
Journal:  Appl Microbiol Biotechnol       Date:  2022-09-19       Impact factor: 5.560

4.  Comparison of inhibitory effects and mechanisms of lactonic sophorolipid on different pathogenic bacteria.

Authors:  Xiao-Jing Ma; Tong Wang; Hui-Min Zhang; Jun-Qian Shao; Mei Jiang; Huai Wang; Hui-Xia Zhu; Dong Zhou
Journal:  Front Microbiol       Date:  2022-09-27       Impact factor: 6.064

Review 5.  Natural Anti-biofilm Agents: Strategies to Control Biofilm-Forming Pathogens.

Authors:  Rojita Mishra; Amrita Kumari Panda; Surajit De Mandal; Muhammad Shakeel; Satpal Singh Bisht; Junaid Khan
Journal:  Front Microbiol       Date:  2020-10-29       Impact factor: 5.640

  5 in total

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