Collagen Cell Model

A collagen cell model is a three-dimensional laboratory system that embeds living cells within a collagen-based matrix to reproduce key features of native tissue. Collagen molecules assemble into a hydrated fibrillar network, while cells adhere to the matrix through integrin receptors and can modify its structure by secreting and degrading extracellular-matrix components. By controlling collagen concentration, gel architecture, and mechanical stiffness, bioengineers can examine cell growth, migration, organization, and tissue remodeling under defined conditions. These models support studies of wound repair, biomaterial design, disease mechanisms, and regenerative medicine, while offering a more physiologically relevant alternative to two-dimensional cell culture.

Collagen Cell Model - 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 Journal - Bioengineering

Fabrication of Micro-tissues using Modules of Collagen Gel Containing Cells

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Cited by 9 •

2010

Creation of micro-tissues using cylindrical collagen gels, called modules, that contain embedded cells and which surface is coated with endothelial cells.

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.

Engineered 3D Silk-collagen-based Model of Polarized Neural Tissue

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Cited by 32 •

2015

Insight into the complex actions of the brain requires advanced research tools. Here we demonstrate a novel silk-collagen-based 3D engineered model of neural tissue resembling brain-like architecture. The model can be used to study neuronal network assembly, axonal guidance, cell-cell interactions and electrical activity.

Developing an Engineered Silk-Collagen-Based 3D Model of Polarized Neural Tissue

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2025

This video showcases the creation of a 3D polarized neural tissue model utilizing silk-collagen scaffolds. It details the process of seeding neuronal cells on porous silk scaffolds, incubating for cell attachment, embedding the scaffold with collagen, and underscores the significance of the supportive collagen matrix in forming a 3D polarized neural tissue model.

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