Heterogenous biofilm mass-transport model replicates periphery sequestration of antibiotics in <i>Pseudomonas aeruginosa</i> PAO1 microcolonies

dc.contributor.author

Prince, Joshua

dc.contributor.author

Jones, A-Andrew D

dc.date.accessioned

2023-11-23T14:46:15Z

dc.date.available

2023-11-23T14:46:15Z

dc.date.issued

2023-11-21

dc.date.updated

2023-11-23T14:46:14Z

dc.description.abstract

<jats:p> A model for antibiotic accumulation in bacterial biofilm microcolonies utilizing heterogenous porosity and attachment site profiles replicated the periphery sequestration reported in prior experimental studies on <jats:italic>Pseudomonas aeruginosa PAO1</jats:italic> biofilm cell clusters. These <jats:italic>P. aeruginosa</jats:italic> cell clusters are in vitro models of the chronic <jats:italic>P. aeruginosa</jats:italic> infections in cystic fibrosis patients which display recalcitrance to antibiotic treatments, leading to exacerbated morbidity and mortality. This resistance has been partially attributed to periphery sequestration, where antibiotics fail to penetrate biofilm cell clusters. The physical phenomena driving this periphery sequestration have not been definitively established. This paper introduces mathematical models to account for two proposed physical phenomena driving periphery sequestration: biofilm matrix attachment and volume-exclusion due to variable biofilm porosity. An antibiotic accumulation model which incorporated these phenomena better fit observed periphery sequestration data compared to previous models. </jats:p>

dc.identifier.issn

0027-8424

dc.identifier.issn

1091-6490

dc.identifier.uri

https://hdl.handle.net/10161/29401

dc.language

en

dc.publisher

Proceedings of the National Academy of Sciences

dc.relation.ispartof

Proceedings of the National Academy of Sciences

dc.relation.isversionof

10.1073/pnas.2312995120

dc.title

Heterogenous biofilm mass-transport model replicates periphery sequestration of antibiotics in Pseudomonas aeruginosa PAO1 microcolonies

dc.type

Journal article

duke.contributor.orcid

Jones, A-Andrew D|0000-0003-3840-8039

pubs.issue

47

pubs.organisational-group

Duke

pubs.organisational-group

Pratt School of Engineering

pubs.organisational-group

Civil and Environmental Engineering

pubs.organisational-group

Thomas Lord Department of Mechanical Engineering and Materials Science

pubs.publication-status

Published

pubs.volume

120

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