JPK Reports on the use of Quantitative Imaging, QI, for the Study of Living Bacteria at the Université de Paris-Sud

15 Jul 2013
Sarah Thomas
Associate Editor

Product news

JPK Instruments, a world-leading manufacturer of nanoanalytic instrumentation for research in life sciences and soft matter, reports on how researchers from the Université de Paris-Sud and CNRS Montpellier have used the new QI mode of AFM imaging to quantitatively characterize living bacteria without any immobilization.

Dr Christian Marlière of the Institute of Molecular Sciences (ISMO) located at the Université Paris Sud, CNRS, Orsay leads a research team to study the dynamics and properties (mechanical, electrical and electro-chemical) of living bacteria in purely controlled physiological conditions at nanometer scale: motility or adhesion processes of bacteria on solid substrates, biofilms formation, the influence of light on moving properties of cyanobacteria, effects of antibiotics on bacterial membranes and biofilm etc. One subject of importance is the correlation between the physical, chemical and biological processes involved at sub-micrometer scale around bacteria and their biofilms plus the resulting variation of electrical signals as measured with common macroscopic methods such as electrical conductivity, impedance or spontaneous potential measurements currently used in geophysics. These scanning probe techniques are used in parallel with optical methods having high spatial and temporal resolution such as fluorescence confocal microscopy, Sum Frequency Generation spectroscopy (SFG), STimulated Emission Depletion microscopy (STED), Photo-Activated Localization Microscopy (PALM) and Total Internal Reflection Fluorescence (TIRF) microscopy.

Describing his motivation for using AFM in his research, Dr Marlière said "Thanks to AFM, we are able to make measurements of local mechanical, electric and electro-chemical properties at very well controlled spots on or over the bacteria. JPK's design will enable us to couple it to the advanced microscopies listed above. However, there is something most valuable in the latest JPK NanoWizard®3 AFM system: Quantitative Imaging. Our recent work is based on an original method relying on an improved combination of a gentle sample preparation process and the JPK QI™ mode. We were able to image living bacteria by AFM in their standard (physiological) liquid environment without any external immobilization step that has been unanimously described in literature as mandatory. Furthermore, the native gliding movements of some bacteria (such as cyanobacteria) upon the surface were observed by AFM and important information about the gliding mechanism was obtained."

An example of this work has been published in a paper entitled "In-situ determination of the mechanical properties of gliding or non-motile bacteria by Atomic Force Microscopy under physiological conditions without immobilization" (citation:PLoS ONE 8(4): e61663. doi:10.1371/journal.pone.0061663/). The lead author was Samia Dhahri, one of Dr Marlière's PhD students in Montpellier. She is pictured above with Dr Marlière and the JPK system.

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MicrobiologyMicrobiology is the study of microorganisms including protists, prokaryotes, fungi, and, often, viruses. Microorganisms are a useful research tool as genetic vectors and, in immunology, for antibiotic susceptibility testing, cellular biology and genetics. Microorganisms commonly grow readily in incubators with microbial culture media; this can contain chromogenic supplements to differentiate between cell lines. Estimate your culture’s density of microorganisms with colony counters, or screen and select colonies for desirable clones with automated colony pickers. Additionally, equipment is available to monitor environments for the presence of microbes and identify with microbial identification instruments. Find the best microbiology products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Atomic Force Microscopy / Scanning Tunneling MicroscopyAtomic force microscopes (AFM) and scanning tunneling microscopes (STM) are high-resolution forms of scanning probe microscope (SPM) used to generate topological information of a sample down to the atomic scale. Instruments can generate an image of the surface topology, manipulate objects and reveal information on localized properties such as Young’s modulus, conductivity, and magnetism. High-quality STM and AFM probes optimized for your application are available, as well as other SPM-based instruments such as scanning ion conductance microscopes (SICM) & near-field scanning optical microscopes (NSOM). Find the best AFM and STM equipment in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.BacteriaBacteria are microorganisms that play critical roles in the environment, human health, and biotechnology. Understanding bacterial genetics, growth, and metabolism is essential for developing antibiotics, vaccines, and improving industrial processes. Browse our peer-reviewed product directory to find the best bacterial research tools, compare products, check reviews, and get pricing directly from manufacturers.ImagingImaging techniques are essential for obtaining visual representations of samples to understand structures, processes, and function in biological, chemical, and physical research. These tools range from traditional light microscopy to advanced imaging modalities like MRI and electron microscopy, providing researchers with valuable data for diagnostics, drug discovery, and material analysis. Explore imaging solutions in our peer-reviewed product directory to compare products, check reviews, and get pricing directly from manufacturers.Biofilm
JPK Reports on the use of Quantitative Imaging, QI, for the Study of Living Bacteria at the Université de Paris-Sud