High Throughput Afm

High-throughput atomic force microscopy (AFM) is an automated approach for rapidly measuring surface structure and properties across many samples, extending conventional AFM beyond low-volume, one-sample-at-a-time analysis. A nanoscale probe mounted on a flexible cantilever scans each surface while feedback maintains a controlled interaction force, and automation, programmable sample handling, parallel measurements, and rapid data acquisition increase experimental throughput. In engineering, high-throughput AFM supports quality control, materials screening, nanofabrication, and characterization of polymers, coatings, thin films, and biological interfaces. By producing statistically meaningful datasets with nanoscale resolution, it helps researchers compare formulations, identify defects, optimize manufacturing conditions, and accelerate materials development.

High Throughput Afm - Related Videos

Research

JoVE Journal - Engineering

Quantitative Hardness Measurement by Instrumented AFM-indentation

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Cited by 6 •

2016

This experimental protocol describes how atomic force microscopy can be used to measure hardness at the true nanometer scale and to detect single atomistic plasticity events.

AFM and Microrheology in the Zebrafish Embryo Yolk Cell

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Cited by 3 •

2017

The lack of tools to measure material properties and tensional parameters in vivo prevents validating their roles during development. We employed atomic force microscopy (AFM) and nanoparticle-tracking to quantify mechanical features on the intact zebrafish embryo yolk cell during epiboly. These methods are reliable and widely applicable avoiding intrusive interventions.

High-throughput Screening for Chemical Modulators of Post-transcriptionally Regulated Genes

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2015

Here we describe a cell-based reporter gene assay as a valuable tool to screen chemical libraries for compounds modulating post-transcriptional control mechanisms exerted through 3’ UTR.

Research

JoVE Journal - Biochemistry
Free Sample

High-Throughput Screening to Obtain Crystal Hits for Protein Crystallography

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Cited by 16 •

2023

This protocol details high-throughput crystallization screening, ranging from the 1,536 microassay plate preparation to the end of a 6 week experimental time window. Details are included about the sample setup, the imaging obtained, and how users can perform analyses using an artificial intelligence-enabled graphical user interface to quickly and efficiently identify macromolecular crystallization conditions.

Au-Interaction of Slp1 Polymers and Monolayer from Lysinibacillus sphaericus JG-B53 - QCM-D, ICP-MS and AFM as Tools for Biomolecule-metal Studies

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Cited by 12 •

2016

To obtain basic information on the sorption and recycling of gold from aqueous systems the interaction of Au(III) and Au(0) nanoparticles on S-layer proteins were investigated. The sorption of protein polymers was investigated by ICP-MS and that of proteinaceous monolayers by QCM-D. Subsequent AFM enables the imaging of the nanostructures.

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