#Nanoindenter
The countless days at the Nanoindenter and discussions after looking at the results finally paid off. I am pretty happy about how this story turned out 👨🏽‍🔬👩🏻‍🔧👩🏻‍💻👨🏼‍💻
June 15, 2025 at 5:44 PM
What do E. coli, a rheometer and a nanoindenter have in common?
Discover it in the latest publication of @cmbidan.bsky.social group at @mpici.bsky.social!

#bacteria #biofilm #mpici #mpikg #womeninSTEM

pubs.acs.org/doi/10.1021/...
Mechanical Comparison of Escherichia coli Biofilms with Altered Matrix Composition: A Study Combining Shear-Rheology and Microindentation
The mechanical properties of bacterial biofilms depend on the composition and microstructure of their extracellular matrix (ECM), which constitutes a network of extracellular proteins and polysaccharide fibers. In particular, Escherichia coli macrocolony biofilms were suggested to present tissue-like elasticity due to a dense fiber network consisting of amyloid curli and phosphoethanolamine-modified cellulose (pEtN-cellulose). To understand the contribution of these two main ECM components to the emergent mechanical properties of E. coli biofilms, we performed shear-rheology and microindentation experiments on biofilms grown from E. coli strains that produce different ECM. We measured that biofilms containing curli fibers are stiffer in compression than curli-deficient biofilms. We further quantitatively demonstrate the crucial contribution of pEtN-cellulose, and especially of the pEtN modification, to the stiffness and structural stability of biofilms when associated with curli fibers. To compare the differences observed between the two methods, we also investigated how the structure and mechanical properties of biofilms with different ECM compositions are affected by the sample preparation method used for shear-rheology. We found that biofilm homogenization, used prior to shear-rheology, destroys the macroscale structure of the biofilm while the microscopic ECM architecture may remain intact. The resulting changes in biofilm mechanical properties highlight the respective advantages and limitations of the two complementary mechanical characterization techniques in the context of biofilm research. As such, our work does not only describe the role of the ECM on the mechanical properties of E. coli biofilms. It also informs the biofilm community on considering sample preparation when interpreting mechanical data of biofilm-based materials.
pubs.acs.org
June 20, 2025 at 11:06 AM
Vickers? Berkovich? Or maybe Knoop?
Welcome to the fascinating world of indenter geometries!

Learn more here and let's talk: nanovea.com/mechanical-t...

#nanoindentation #nanoscratch #materialsscience #materialstesting #nanoindenter
October 7, 2025 at 12:49 AM
🔬 Trained Dr Shabangu on Chiaro Nanoindenter & tested hydrogels from Prof Ahluwalia
🎙️ Presented B01 results to lab & Div. of Biomedical Engineering, feedback shaping protocols and papers 📑! ✨
🐟 Exchange of ideas on zebrafish regeneration with Prof Shaboodien
June 13, 2025 at 7:28 AM
High-temperature nanoindentation is not only about heating the sample.

NANOVEA’s module supports controlled mechanical property testing up to 600°C, with an enclosed environment and MACOR-based design to help reduce thermal expansion effects.

nanovea.com/instruments/...

#nanoindenter #scratchtest
June 3, 2026 at 8:57 PM
NANOVEA Mechanical Testers

For reliable nanoindentation, micro-indentation, or scratch-testing data across R&D, QA, and advanced materials evaluation, this is the platform engineered for precision:

nanovea.com/instruments/...

#nanoindentation #nanoindenter #materialsscience
December 10, 2025 at 5:58 PM
From soft polymers to the hardest coatings - NANOVEA Mechanical Testers give you the freedom to explore any COF testing concept with unmatched versatility in contact geometry and load control.

Discover how: nanovea.com/mechanical-t...

#COF #friction #frictiontest #nanoindenter #scratchtester
October 8, 2025 at 5:23 PM
❄️ COLD TEMPERATURE NANOINDENTATION: nanovea.com/instruments/...

🧊 Enclosed environment ensures unmatched thermal consistency

🧊 Peltier cooling system enables high-accuracy measurements under extreme cold

#Nanoindentation #MaterialsScience #ColdTemperature #MaterialsEngineer #Nanoindenter
May 21, 2025 at 6:04 PM