Substrate Topography

Substrate topography is the arrangement of physical features on a material surface, including patterns, grooves, pillars, pores, and ridges that influence how cells and biomolecules interact with it. In bioengineering, cells sense these micro- and nanoscale cues through adhesion complexes and the cytoskeleton, converting changes in shape, tension, and surface contact into biochemical signals that regulate spreading, migration, alignment, proliferation, and differentiation. Engineered topographies help researchers control cell behavior in culture and assess how physical environments contribute to tissue development and disease. They also support the design of biomaterials, implants, and tissue-engineering scaffolds with more physiologically relevant interfaces.

Substrate Topography - Related Videos

Education

JoVE Core - Civil Engineering

Methods of Obtaining Topography

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2025

Topography involves measuring and mapping land elevations, natural features, and artificial structures to create accurate representations of the terrain. Topographic surveying relies on traditional and modern methods, each with distinct advantages and limitations.Traditional Surveying Methods:Transit stadia surveys and plane table surveys were widely used traditional surveying methods. These techniques relied on instruments like theodolites and stadia rods for measuring distances and angles,...

Research

JoVE Journal - Engineering
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Laser Micromachining for Polymer Surface Topography Design

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2025

A method for imposing surface topography of light-absorbing composite polymer materials, particularly magnetoactive elastomers (MAEs), by using laser micromachining is presented. This method enables large flexibility in topographical designs and rapid prototyping. An example of structuring MAE surfaces, characterization, and their response to the external magnetic field is demonstrated.

Revealing Neural Circuit Topography in Multi-Color

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Cited by 6 •

2011

We provide a practical guide for delivering tracers in vivo and use the spinocerebellar pathway as a model system to demonstrate essential steps for successful neuronal circuit analysis in mice. We describe in detail our versatile tracing protocol that exploits wheat germ agglutinin (WGA) conjugated to Alexa fluorophores.

Wholemount Immunohistochemistry for Revealing Complex Brain Topography

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Cited by 17 •

2012

Neural circuits are topographically organized into functional compartments with specific molecular profiles. Here, we provide the practical and technical steps for revealing global brain topography using a versatile wholemount immunohistochemical staining approach. We demonstrate the utility of the method using the well-understood cytoarchitecture and circuitry of cerebellum.

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.

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