Literature DB >> 28092956

Mathematical analysis of a quorum sensing induced biofilm dispersal model and numerical simulation of hollowing effects.

Blessing O Emerenini1, Stefanie Sonner, Hermann J Eberl.   

Abstract

We analyze a mathematical model of quorum sensing induced biofilm dispersal. It is formulated as a system of non-linear, density-dependent, diffusion-reaction equations. The governing equation for the sessile biomass comprises two non-linear diffusion effects, a degeneracy as in the porous medium equation and fast diffusion. This equation is coupled with three semi-linear diffusion-reaction equations for the concentrations of growth limiting nutrients, autoinducers, and dispersed cells. We prove the existence and uniqueness of bounded non-negative solutions of this system and study the behavior of the model in numerical simulations, where we focus on hollowing effects in established biofilms.

Mesh:

Year:  2017        PMID: 28092956     DOI: 10.3934/mbe.2017036

Source DB:  PubMed          Journal:  Math Biosci Eng        ISSN: 1547-1063            Impact factor:   2.080


  3 in total

Review 1.  Continuum and discrete approach in modeling biofilm development and structure: a review.

Authors:  M R Mattei; L Frunzo; B D'Acunto; Y Pechaud; F Pirozzi; G Esposito
Journal:  J Math Biol       Date:  2017-07-24       Impact factor: 2.259

2.  Information transmission in microbial and fungal communication: from classical to quantum.

Authors:  Sarangam Majumdar; Sukla Pal
Journal:  J Cell Commun Signal       Date:  2018-02-23       Impact factor: 5.782

3.  Bacteria Floc, but Do They Flock? Insights from Population Interaction Models of Quorum Sensing.

Authors:  Hana Ueda; Kristina Stephens; Konstantina Trivisa; William E Bentley
Journal:  mBio       Date:  2019-05-28       Impact factor: 7.867

  3 in total

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