3d Tissue Culture

3D tissue culture is a laboratory method for growing cells in three-dimensional environments that more closely reproduce the architecture and interactions of living tissues than conventional two-dimensional cultures. It works by embedding or aggregating cells within supportive matrices or scaffolds, allowing cell-cell and cell-matrix interactions to shape tissue organization, signaling, and differentiation. In developmental biology, these systems can model tissue formation, morphogenesis, and organ development while maintaining spatial relationships and local chemical gradients. They also support disease modeling, drug testing, and regenerative research, providing more physiologically relevant experimental platforms and helping connect molecular mechanisms with developmental outcomes.

3d Tissue Culture - Related Videos

Research

JoVE Journal - Bioengineering
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Tissue Engineering of a Human 3D in vitro Tumor Test System

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Cited by 34 •

2013

Methods to create human 3D tumor tissues as test systems are described. These technologies are based on a decellularized Biological Vascularized Scaffold (BioVaSc), primary human cells and a tumor cell line, which can be cultured under static as well as under dynamic conditions in a flow bioreactor.

Education

JoVE Science Education - Engineering

Histotypic Tissue Culture

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2023

Although two-dimensional tissue culture has been common for some time, cells behave more realistically in a three-dimensional culture, and more closely mimics native tissue. This video introduces histotypic tissue culture, where the growth and propagation of one cell line is done in an engineered three-dimensional matrix to reach high cell density. Here, we show the harvesting of cells from donor tissue, followed by cell culture on an engineered construct.

Research

JoVE Journal - Medicine
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Generation of Human 3D Lung Tissue Cultures (3D-LTCs) for Disease Modeling

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Cited by 46 •

2019

Here, we present a protocol for the preparation of agarose-filled human precision-cut lung slices from resected patient tissue that are suitable for generating 3D lung tissue cultures to model human lung diseases in biological and biomedical studies.

Impact Assessment of Repeated Exposure of Organotypic 3D Bronchial and Nasal Tissue Culture Models to Whole Cigarette Smoke

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Cited by 41 •

2015

The aim of this protocol is to expose human organotypic 3D bronchial and nasal tissue models to mainstream cigarette smoke (CS) at the air-liquid interface. The impact of CS on the tissues is then investigated using a cytochrome P450 activity assay, a cilia beating measurement, and a systems biology approach.

Magnetically Bioprinted 3D Spheroid Co-cultures: A Method for Co-culturing Cancerous Cells and Fibroblasts

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2023

This video explains the 3D magnetic bioprinting of co-cultured pancreatic cancer cells and fibroblasts. Pancreatic cancer cells and activated pancreatic fibroblast cells are co-cultured and magnetized using a biocompatible nanoparticle assembly, to generate spheroids, under the influence of magnetic forces.

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