Hypothesis for the Role of Nutrient Starvation in Biofilm Detachment
Гипотеза о роли голодания по питательным веществам в отрыве биоплёнки
2004-12-01
SCID: 54.1/d4xvuv8x
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Pseudomonas aeruginosabiofilm detachmentbiofilm sloughingcellular automata modelnutrient starvation
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Abstract (AI)
A combination of experimental and theoretical approaches was used to investigate the role of nutrient starvation as a potential trigger for biofilm detachment. Experimental observations of detachment in a variety of biofilm systems were made with pure cultures of Pseudomonas aeruginosa. These observations indicated that biofilms grown under continuous-flow conditions detached after flow was stopped, that hollow cell clusters were sometimes observed in biofilms grown in flow cells, and that lysed cells were apparent in the internal strata of colony biofilms. When biofilms were nutrient starved under continuous-flow conditions, detachment still occurred, suggesting that starvation and not the accumulation of a metabolic product was responsible for triggering detachment in this particular system. A cellular automata computer model of biofilm dynamics was used to explore the starvation-dependent detachment mechanism. The model predicted biofilm structures and dynamics that were qualitatively similar to those observed experimentally. The predicted features included centrally located voids appearing in sufficiently large cell clusters, gradients in growth rate within these clusters, and the release of most of the biofilm with simulated stopped-flow conditions. The model was also able to predict biofilm sloughing resulting solely from this detachment mechanism. These results support the conjecture that nutrient starvation is an environmental cue for the release of microbes from a biofilm.
Key Findings
1
A cellular automaton model reproduced experimentally observed features, including internal voids, growth-rate gradients, and extensive release after flow stopped.
2
Detachment occurred under continuous-flow nutrient starvation, indicating starvation rather than metabolic-product accumulation triggered detachment in this system.
3
Experimental and modeling results support nutrient starvation as an environmental cue for microbial release from biofilms.
4
Pseudomonas aeruginosa biofilms detached after flow cessation, and internal hollow clusters and lysed cells were observed in several biofilm systems.
5
The model predicted biofilm sloughing caused solely by the starvation-dependent detachment mechanism.
Research Object
Pseudomonas aeruginosa biofilms under continuous-flow and nutrient-starvation conditions
Research Subject
The role and mechanism of nutrient starvation as a trigger for biofilm detachment and sloughing
Publication Details
Publication Date
2004-12-01
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