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research article

Force volume and stiffness tomography investigation on the dynamics of stiff material under bacterial membranes

Longo, Giovanni  
•
Rio, Laura Marques
•
Roduit, Charles  
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2012
Journal Of Molecular Recognition

The determination of the characteristics of micro-organisms in clinical specimens is essential for the rapid diagnosis and treatment of infections. A thorough investigation of the nanoscale properties of bacteria can prove to be a fundamental tool. Indeed, in the latest years, the importance of high resolution analysis of the properties of microbial cell surfaces has been increasingly recognized. Among the techniques available to observe at high resolution specific properties of microscopic samples, the Atomic Force Microscope (AFM) is the most widely used instrument capable to perform morphological and mechanical characterizations of living biological systems. Indeed, AFM can routinely study single cells in physiological conditions and can determine their mechanical properties with a nanometric resolution. Such analyses, coupled with high resolution investigation of their morphological properties, are increasingly used to characterize the state of single cells. In this work, we exploit the capabilities and peculiarities of AFM to analyze the mechanical properties of Escherichia coli in order to evidence with a high spatial resolution the mechanical properties of its structure. In particular, we will show that the bacterial membrane is not mechanically uniform, but contains stiffer areas. The force volume investigations presented in this work evidence for the first time the presence and dynamics of such structures. Such information is also coupled with a novel stiffness tomography technique, suggesting the presence of stiffer structures present underneath the membrane layer that could be associated with bacterial nucleoids. Copyright (C) 2012 John Wiley & Sons, Ltd.

  • Details
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Type
research article
DOI
10.1002/jmr.2171
Web of Science ID

WOS:000303160300008

Author(s)
Longo, Giovanni  
Rio, Laura Marques
Roduit, Charles  
Trampuz, Andrej
Bizzini, Alain
Dietler, Giovanni  
Kasas, Sandor  
Date Issued

2012

Publisher

Wiley-Blackwell

Published in
Journal Of Molecular Recognition
Volume

25

Start page

278

End page

284

Subjects

Afm

•

stiffness

•

mechanical properties

•

stiffness tomography

•

bacteria

•

E

•

coli

•

nucleoids

•

Nanomechanical Properties

•

Spatial Regulation

•

Bacillus-Subtilis

•

Dna Protection

•

Cell-Cycle

•

Microscopy

•

Proteins

•

Cytoskeleton

•

Surfaces

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LPMV  
Available on Infoscience
May 18, 2012
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/80561
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