Three-dimensional Scaffold

A three-dimensional scaffold is a structured material that provides physical support and spatial organization for cells, tissues, or engineered biological constructs. In bioengineering, its porous architecture enables cell adhesion, migration, and nutrient transport while presenting mechanical and biochemical cues that can guide tissue formation; biodegradable scaffolds may gradually degrade as new tissue develops. Researchers design scaffolds from natural or synthetic materials with controlled pore size, stiffness, and degradation rates to match specific tissues. These systems support tissue engineering, regenerative medicine, organoid culture, and disease modeling, helping investigate cell behavior and develop strategies for repairing or replacing damaged biological structures.

Three-dimensional Scaffold - Related Videos

Research

JoVE Journal - Bioengineering

Self-reporting Scaffolds for 3-Dimensional Cell Culture

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Cited by 7 •

2013

Biocompatible pH responsive sol-gel nanosensors can be incorporated into poly(lactic-co-glycolic acid) (PLGA) electrospun scaffolds. The produced self-reporting scaffolds can be used for in situ monitoring of microenvironmental conditions whilst culturing cells upon the scaffold. This is beneficial as the 3D cellular construct can be monitored in real-time without disturbing the experiment.

Research

JoVE Journal - Cancer Research
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Three-Dimensional In Vitro Biomimetic Model of Neuroblastoma Using Collagen-Based Scaffolds

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Cited by 9 •

2021

This paper lists the steps required to seed neuroblastoma cell lines on previously described three-dimensional collagen-based scaffolds, maintain cell growth for a predetermined timeframe, and retrieve scaffolds for several cell growth and cell behavior analyses and downstream applications, adaptable to satisfy a range of experimental aims.

Microfabrication of Chip-sized Scaffolds for Three-dimensional Cell cultivation

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Cited by 11 •

2008

We present two processes for the microfabrication of porous polymer chips for three-dimensional cell cultivation. The first one is hot embossing combined with a solvent vapour welding process. The second one uses a recently developed microthermoforming process combined with ion track technology leading to a significant simplification of manufacture.

Culturing Mammalian Cells in Three-dimensional Peptide Scaffolds

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Cited by 10 •

2018

Here, we present a protocol to obtain 3D-culture systems in self-assembling peptide scaffolds to promote the differentiation of dedifferentiated human articular chondrocytes into cartilage-like tissue.

Melt Electrospinning Writing of Three-dimensional Poly(ε-caprolactone) Scaffolds with Controllable Morphologies for Tissue Engineering Applications

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Cited by 56 •

2017

This protocol serves as a comprehensive guideline to fabricate scaffolds via electrospinning with polymer melts in a direct writing mode. We systematically outline the process and define the appropriate parameter settings for achieving targeted scaffold architectures.

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