Biofilm Mechanical Properties

Biofilm mechanical properties describe how communities of microorganisms embedded in an extracellular polymeric substance matrix deform, adhere, flow, and resist physical forces. These behaviors arise from interactions among cells, polysaccharides, proteins, nucleic acids, and water, which together determine properties such as stiffness, viscoelasticity, cohesion, and surface attachment; environmental conditions can further alter matrix structure and mechanical response. In bioengineering, characterizing these properties helps explain biofilm growth, detachment, transport, and resistance to shear or mechanical disruption. Such knowledge supports the design of antimicrobial surfaces, engineered bioreactors, medical devices, and strategies for controlling harmful or beneficial biofilms.

Biofilm Mechanical Properties - Related Videos

Research

JoVE Journal - Bioengineering

In Situ Mapping of the Mechanical Properties of Biofilms by Particle-tracking Microrheology

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Cited by 11 •

2015

Particle-tracking microrheology investigates the viscoelasticity of materials. Here, the technique is used to determine the viscoelasticity, creep compliance and effective crosslinking roles of different matrix components of a bacterial biofilm. The matrix consists of polymeric substances secreted by the bacteria and its components determine biofilm structure and mechanical properties.

Remote Magnetic Actuation of Micrometric Probes for in situ 3D Mapping of Bacterial Biofilm Physical Properties

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Cited by 6 •

2014

This paper shows an original methodology based on the remote actuation of magnetic particles seeded in a bacterial biofilm and the development of dedicated magnetic tweezers to measure in situ the local mechanical properties of the complex living material built by micro-organisms at interfaces.

Quantifying Elastic Properties of Environmental Biofilms using Optical Coherence Elastography

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2024

This paper highlights the optical coherence elastography (OCE) technique's efficacy in rapidly and non-destructively characterizing biofilm elastic properties. We elucidate critical OCE implementation procedures for accurate measurements and present Young's modulus values for two granular biofilms.

In Vivo Evaluation of the Mechanical and Viscoelastic Properties of the Rat Tongue

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2017

We describe a surgical procedure in an anesthetized rat model for determining the muscle tone and viscoelastic properties of the tongue. The procedure involves specific stimulation of the hypoglossal nerves and application of passive Lissajous force/deformation curves to the muscle.

Growth of Mycobacterium tuberculosis Biofilms

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Cited by 79 •

2012

Mycobacterium tuberculosis forms drug tolerant biofilms when cultured in certain conditions. Here we describe methods for culturing M. tuberculosis biofilms and determining the frequency of drug tolerant persisters. These protocols will be useful for further studies into the mechanisms of drug tolerance in M. tuberculosis.

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