Magnetic Substrate

Magnetic substrates are engineered surfaces or support materials that respond to an applied magnetic field, allowing researchers to control physical interactions at the material–cell interface. They typically combine a base substrate with magnetic particles or patterned magnetic regions; field-generated forces can reposition magnetically responsive components, alter local mechanical cues, or create dynamic, noncontact stimulation. In neuroscience, these substrates provide experimental platforms for studying how neurons and glial cells sense their environment, including effects on adhesion, migration, neurite extension, and network organization. Their tunable properties may support neural tissue engineering, cell-patterning strategies, and investigations of mechanically or magnetically regulated neural behavior.

Magnetic Substrate - Related Videos

Research

JoVE EoE - Neuronal Culture Techniques

Growth and Differentiation of Magnetic Nano Particle-Loaded Neurons on Magnetic Platforms

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2025

This video demonstrates the uptake of fluorescent magnetic nanoparticles (MNPs) by the neuronal cells via endocytosis. Growing these MNP-loaded neurons on the magnetically patterned substrate enables the attachment of the cells. The addition of a growth factor containing medium aids in the growth of neuron extensions, while the magnetic field of the substrate directs the orientation of the extension.

Probing C84-embedded Si Substrate Using Scanning Probe Microscopy and Molecular Dynamics

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Cited by 1 •

2016

This paper reports the nanomaterial fabrication of a fullerene Si substrate inspected and verified by nanomeasurements and molecular dynamic simulation.

Identification of Kinase-substrate Pairs Using High Throughput Screening

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Cited by 1 •

2015

Protein phosphorylation is a central feature of how cells interpret and respond to information in their extracellular milieu. Here, we present a high throughput screening protocol using kinases purified from mammalian cells to rapidly identify kinases that phosphorylate a substrate(s) of interest.

Education

JoVE Science Education - Physics

Magnetic Fields

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2023

Source: Yong P. Chen, PhD, Department of Physics & Astronomy, College of Science, Purdue University, West Lafayette, IN Magnetic fields can be generated by moving charges, such as an electrical current. The magnetic field generated by a current can be calculated from the Maxwell equation. In addition, magnetic objects such as bar magnets can also generate magnetic fields due to microscopic dynamics of charges inside the material. Magnetic fields will exert magnetic force on other moving...

A Magnetic Nanoparticle-Based Immunoassay Using a Microfluidic Device

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2025

This video demonstrates a microfluidic system for a magnetic nanoparticle-based immunoassay. The detection system utilizes a microfluidic device incorporating a magnetic trap within its channels. Pre-formed immunocomplexes, comprised of antigen-coated magnetic nanoparticles bound to primary and peroxidase-conjugated secondary antibodies, are introduced into the channels. The immunocomplexes become captured in the porous magnetic trap upon applying an external magnetic field. Using a fluorogenic...

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