Bio-afm Automation

Bio-AFM automation combines biological atomic force microscopy with programmed instrument control to improve the efficiency, consistency, and reproducibility of nanoscale measurements in biological systems. It works by coordinating probe positioning, surface scanning, force spectroscopy, and image acquisition through predefined workflows, while controlling experimental conditions such as liquid environments and applied forces. In bioengineering, automated Bio-AFM can characterize cell surfaces, membrane structures, biomaterials, and molecular interactions with reduced operator variability. These measurements provide quantitative information about nanoscale morphology and mechanical properties, supporting biomaterial design, cell-mechanics studies, disease research, and the development of more scalable, standardized experimental methods.

Bio-afm Automation - 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.

Automation of Bio-Atomic Force Microscope Measurements on Hundreds of C. albicans Cells

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Cited by 3 •

2021

This protocol aims to automate AFM measurements on hundreds of microbial cells. First, microbes are immobilized into PDMS stamp microstructures and then force spectroscopy measurements are performed automatically on hundreds of immobilized cells.

Research

JoVE Journal - Biology
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Using an Automated Cell Counter to Simplify Gene Expression Studies: siRNA Knockdown of IL-4 Dependent Gene Expression in Namalwa Cells

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Cited by 2 •

2010

This procedure describes a quick and easy workflow to introduce siRNA into difficult to transfect cell lines and follow gene expression by real-time PCR. Use of an automated cell counter, multi-well electroporation plate, and automated electrophoresis station provide quick and reliable results without the need for expensive robotic handling.

Bridging the Bio-Electronic Interface with Biofabrication

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Cited by 3 •

2012

This article describes a biofabrication approach: deposition of stimuli-responsive polysaccharides in the presence of biased electrodes to create biocompatible films which can be functionalized with cells or proteins. We demonstrate a bench-top strategy for the generation of the films as well as their basic uses for creating interactive biofunctionalized surfaces for lab-on-a-chip applications.

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