Collagen Hydrogel Scaffold

Collagen hydrogel scaffolds are water-rich, three-dimensional biomaterials that mimic aspects of the extracellular matrix and support cell growth, organization, and tissue formation. They form when collagen molecules assemble into a fibrillar network, often through changes in pH and temperature, while crosslinking can adjust the scaffold’s mechanical strength, stability, and degradation rate. In bioengineering, these scaffolds provide injectable or patterned environments for cell encapsulation, tissue engineering, wound repair, and drug delivery. Their tunable composition and biologically recognizable structure help researchers study cell behavior and develop regenerative strategies for tissues with complex architectures.

Collagen Hydrogel Scaffold - Related Videos

Education

JoVE Science Education - Engineering

Collagen Hydrogels

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2023

Collagen is another widely used biomaterial that has found popularity in commercial applications, such as photography. Collagen has more recently been used in tissue engineering applications, by creating hydrogels that provide structure to engineered tissue. This video introduces collagen as a biomaterial, demonstrates how it is harvested from porcine skin, and shows how the material is used to create a hydrogel for tissue engineering applications. Finally, several applications of the material...

Research

JoVE EoE - Neuronal Culture Techniques

An In Vitro Method to Generate Astrocyte Scaffolds within Hydrogel Micro-columns

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2025

This video demonstrates a method to generate three-dimensional astrocyte scaffolds within hydrogel micro-columns. The inside of the microcolumns are coated with collagen. Astrocytes are introduced, which adhere to collagen and, with further incubation, self-assemble into a three-dimensional scaffold.

Research

JoVE Journal - Bioengineering
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3D Hydrogel Scaffolds for Articular Chondrocyte Culture and Cartilage Generation

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Cited by 38 •

2015

Cartilage repair represents an unmet medical challenge and cell-based approaches to engineer human articular cartilage are a promising solution. Here, we describe three-dimensional (3D) biomimetic hydrogels as an ideal tool for the expansion and maturation of human articular chondrocytes.

Three-dimensional Biomimetic Technology: Novel Biorubber Creates Defined Micro- and Macro-scale Architectures in Collagen Hydrogels

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Cited by 4 •

2016

An innovative biofabrication technique was developed to engineer three-dimensional constructs that resemble the architectural features, components, and mechanical properties of in vivo tissue. This technique features a newly developed sacrificial material, BSA rubber, which transfers detailed spatial features, reproducing the in vivo architectures of a wide variety of tissues.

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.

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