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Effect of surfactant on Pseudomonas aeruginosa colonization of polymer microparticles and flat films

Hüsler, Amanda; Haas, Simon; Parry, Luke; Romero, Manuel; Nisisako, Takasi; Williams, Paul; Wildman, Ricky D.; Alexander, Morgan R.

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Authors

Amanda Hüsler

Simon Haas

Luke Parry

Manuel Romero

Takasi Nisisako

PAUL WILLIAMS PAUL.WILLIAMS@NOTTINGHAM.AC.UK
Professor of Molecular Microbiology

RICKY WILDMAN RICKY.WILDMAN@NOTTINGHAM.AC.UK
Professor of Multiphase Flow and Mechanics

Profile image of MORGAN ALEXANDER

MORGAN ALEXANDER MORGAN.ALEXANDER@NOTTINGHAM.AC.UK
Professor of Biomedical Surfaces



Abstract

Micro- and nanoparticles are of great interest because of their potential for trafficking into the body for applications such as low-fouling coatings on medical devices, drug delivery in pharmaceutics and cell carriers in regenerative medicine strategies. Particle production often relies on the use of surfactants to promote stable droplet formation. However, the presence of residual surfactant has been shown to complicate the surface chemistry and resultant properties. When forming particles from polymerizable monomer droplets, these polymeric surfactant chains can become physically entangled in the particle surface. Due to the key role of the outermost layers of the surface in biomaterial interactions, the surface chemistry and its influence on cells needs to be characterized. This is the first study to assess surfactant retention on microfluidic produced particles and its effect on bacterial attachment; surfactant contaminated microparticles are compared with flat films which are surfactant-free. Polymeric microparticles with an average diameter of 76 ± 1.7 μm were produced by using a T-junction microfluidic system to form monomer droplets which were subsequently photopolymerized. Acrylate based monomer solutions were found to require 2 wt% PVA to stabilize droplet formation. ToF-SIMS was employed to assess the surface chemistry revealing the presence of PVA in a discontinuous layer on the surface of microparticles which was reduced but not removed by solvent washing. The effect of PVA on bacterial (Pseudomonas aeruginosa) attachment was quantified and showed reduction as a function of the amount of PVA retained at the surface. The insights gained in this study help define the structure–function relationships of the particulate biomaterial architecture, supporting materials design with biofilm control.

Citation

Hüsler, A., Haas, S., Parry, L., Romero, M., Nisisako, T., Williams, P., Wildman, R. D., & Alexander, M. R. (2018). Effect of surfactant on Pseudomonas aeruginosa colonization of polymer microparticles and flat films. RSC Advances, 8(28), https://doi.org/10.1039/c8ra01491d

Journal Article Type Article
Acceptance Date Apr 8, 2018
Publication Date Apr 24, 2018
Deposit Date Jun 22, 2018
Publicly Available Date Jun 22, 2018
Journal RSC Advances
Electronic ISSN 2046-2069
Publisher Royal Society of Chemistry
Peer Reviewed Peer Reviewed
Volume 8
Issue 28
DOI https://doi.org/10.1039/c8ra01491d
Public URL https://nottingham-repository.worktribe.com/output/927964
Publisher URL http://pubs.rsc.org/en/Content/ArticleLanding/2018/RA/C8RA01491D#!divAbstract
Contract Date Jun 22, 2018

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