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Marion Mathelié-Guinlet

Showing results (1-10 of 32) with videos related to

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Cellular Microbiology|March 12, 2021
AFM in cellular and molecular microbiologyYves F Dufrêne, Albertus Viljoen, Johann Mignolet, et al.
Trends in Microbiology|December 23, 2020
Stress-Induced Catch-Bonds to Enhance Bacterial AdhesionMarion Mathelié-Guinlet, Felipe Viela, David Alsteens, et al.
Nanoscale Horizons|May 13, 2021
AFM force-clamp spectroscopy captures the nanomechanics of the Tad pilus retractionJohann Mignolet, Marion Mathelié-Guinlet, Albertus Viljoen, et al.
Molecular Microbiology|January 10, 2020
What makes bacterial pathogens so sticky?Felipe Viela, Marion Mathelié-Guinlet, Albertus Viljoen, et al.
Pathogens (Basel, Switzerland)|August 28, 2021
A New Function for Amyloid-Like Interactions: Cross-Beta Aggregates of Adhesins form Cell-to-Cell BondsPeter N Lipke, Marion Mathelié-Guinlet, Albertus Viljoen, et al.
Trends in Microbiology|May 30, 2020
Bacterial Cell Mechanics Beyond PeptidoglycanMarion Mathelié-Guinlet, Abir T Asmar, Jean-François Collet, et al.
Nano Letters|September 1, 2021
AFM Identifies a Protein Complex Involved in Pathogen Adhesion Which Ruptures at Three NanonewtonsConstance Chantraine, Marion Mathelié-Guinlet, Giampiero Pietrocola, et al.
Nature Communications|April 15, 2020
Lipoprotein Lpp regulates the mechanical properties of the E. coli cell envelopeMarion Mathelié-Guinlet, Abir T Asmar, Jean-François Collet, et al.
Journal of Bacteriology|April 8, 2020
How Microbes Use Force To Control AdhesionAlbertus Viljoen, Johann Mignolet, Felipe Viela, et al.
Mbio|July 9, 2020
The Molecular Complex between Staphylococcal Adhesin SpsD and Fibronectin Sustains Mechanical Forces in the Nanonewton RangeFelipe Viela, Marion Mathelié-Guinlet, Giampiero Pietrocola, et al.
Pageof 4

Showing results (1-10 of 32) with videos related to

Sort By:
Pageof 4
Cellular Microbiology|March 12, 2021
AFM in cellular and molecular microbiologyYves F Dufrêne, Albertus Viljoen, Johann Mignolet, et al.
Trends in Microbiology|December 23, 2020
Stress-Induced Catch-Bonds to Enhance Bacterial AdhesionMarion Mathelié-Guinlet, Felipe Viela, David Alsteens, et al.
Nanoscale Horizons|May 13, 2021
AFM force-clamp spectroscopy captures the nanomechanics of the Tad pilus retractionJohann Mignolet, Marion Mathelié-Guinlet, Albertus Viljoen, et al.
Molecular Microbiology|January 10, 2020
What makes bacterial pathogens so sticky?Felipe Viela, Marion Mathelié-Guinlet, Albertus Viljoen, et al.
Pathogens (Basel, Switzerland)|August 28, 2021
A New Function for Amyloid-Like Interactions: Cross-Beta Aggregates of Adhesins form Cell-to-Cell BondsPeter N Lipke, Marion Mathelié-Guinlet, Albertus Viljoen, et al.
Trends in Microbiology|May 30, 2020
Bacterial Cell Mechanics Beyond PeptidoglycanMarion Mathelié-Guinlet, Abir T Asmar, Jean-François Collet, et al.
Nano Letters|September 1, 2021
AFM Identifies a Protein Complex Involved in Pathogen Adhesion Which Ruptures at Three NanonewtonsConstance Chantraine, Marion Mathelié-Guinlet, Giampiero Pietrocola, et al.
Nature Communications|April 15, 2020
Lipoprotein Lpp regulates the mechanical properties of the E. coli cell envelopeMarion Mathelié-Guinlet, Abir T Asmar, Jean-François Collet, et al.
Journal of Bacteriology|April 8, 2020
How Microbes Use Force To Control AdhesionAlbertus Viljoen, Johann Mignolet, Felipe Viela, et al.
Mbio|July 9, 2020
The Molecular Complex between Staphylococcal Adhesin SpsD and Fibronectin Sustains Mechanical Forces in the Nanonewton RangeFelipe Viela, Marion Mathelié-Guinlet, Giampiero Pietrocola, et al.
Pageof 4