Analysis of adaptive response to dosing protocols for biofilm control

dc.contributor.authorSzomolay, Barbara
dc.contributor.authorKlapper, Isaac
dc.contributor.authorDindos, Martin
dc.date.accessioned2017-06-20T15:53:11Z
dc.date.available2017-06-20T15:53:11Z
dc.date.issued2010-01
dc.description.abstractBiofilms are sessile populations of microbes that live within a self-secreted matrix of extracellular polymers. They exhibit high tolerance to antimicrobial agents, and experimental evidence indicates that in many instances repeated doses of antimicrobials further reduce disinfection efficiency due to an adaptive stress response. In this investigation, a mathematical model of bacterial adaptation is presented consisting of an adapted-unadapted population system embedded within a moving boundary problem coupled to a reaction-diffusion equation. The action of antimicrobials on biofilms under different dosing protocols is studied both analytically and numerically. We find the limiting behavior of solutions under periodic and on-off dosing as the period is made very large or very small. High dosages often carry undesirable side effects so we specially consider low dosing regimes. Our results indicate that on-off dosing for small doses of biocide is more effective than constant dosing. Moreover, in a specific case, on-off dosing for short periods is again more effective regardless of the biocide dose. We also provide sufficient conditions for the eradication of biofilms under a constant dosing regime.en_US
dc.identifier.citationSzomolay B, Klapper I, Dindos M, "Analysis of adaptive response to dosing protocols for biofilm control," SIAM J Appl Math, 2010 70(8):3175–3202.en_US
dc.identifier.issn0036-1399
dc.identifier.urihttps://scholarworks.montana.edu/handle/1/13090
dc.titleAnalysis of adaptive response to dosing protocols for biofilm controlen_US
dc.typeArticleen_US
mus.citation.extentfirstpage3175en_US
mus.citation.extentlastpage3202en_US
mus.citation.issue8en_US
mus.citation.journaltitleSIAM Journal on Applied Mathematicsen_US
mus.citation.volume70en_US
mus.data.thumbpage3185en_US
mus.identifier.categoryEngineering & Computer Scienceen_US
mus.identifier.doi10.1137/080739070en_US
mus.relation.collegeCollege of Engineeringen_US
mus.relation.departmentCenter for Biofilm Engineering.en_US
mus.relation.departmentChemical & Biological Engineering.en_US
mus.relation.departmentChemical Engineering.en_US
mus.relation.departmentMathematical Sciences.en_US
mus.relation.researchgroupCenter for Biofilm Engineering.en_US
mus.relation.universityMontana State University - Bozemanen_US

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