Three Dimensional Tissues

Three-dimensional tissues are organized groups of cells that form spatial structures resembling the architecture and function of tissues in living organisms. Unlike flat cell cultures, they develop through cell-cell interactions, extracellular matrix adhesion, and chemical and physical gradients that influence cell differentiation, polarity, and communication across multiple layers. Researchers create three-dimensional tissues using scaffolds, hydrogels, organoid culture, or engineered bioprinting systems to model development, disease, and tissue repair. These models can reproduce features that two-dimensional cultures often miss, improving studies of drug responses, cell behavior, and regenerative therapies while reducing reliance on animal experiments.

Three Dimensional Tissues - Related Videos

Research

JoVE Journal - Bioengineering

Engineering Three-dimensional Epithelial Tissues Embedded within Extracellular Matrix

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Cited by 6 •

2016

This manuscript describes a soft lithography-based technique to engineer uniform arrays of three-dimensional (3D) epithelial tissues of defined geometry surrounded by extracellular matrix. This method is amenable to a wide variety of cell types and experimental contexts and allows for high-throughput screening of identical replicates.

Three-Dimensional Visualization of a Rabies Virus Infection in Mouse Brain Tissue

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2025

Source: Zaeck, L., et al. High-Resolution 3D Imaging of Rabies Virus Infection in Solvent-Cleared Brain Tissue. J. Vis. Exp. (2019). This video demonstrates the process of preparing and imaging mouse brain tissue infected with the rabies virus (RABV) to evaluate infection progression. It outlines key steps, including tissue staining with fluorescent markers, dehydration, clearing, and mounting for confocal laser scanning microscopy, culminating in the generation of a three-dimensional...

Human Cartilage Tissue Fabrication Using Three-dimensional Inkjet Printing Technology

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Cited by 85 •

2014

The methods described in this paper show how to convert a commercial inkjet printer into a bioprinter with simultaneous UV polymerization. The printer is capable of constructing 3D tissue structure with cells and biomaterials. The study demonstrated here constructed a 3D neocartilage.

Three-Dimensional Imaging of Aortic Tissues in Atherosclerosis

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2024

Here, we present optimized tissue-clearing protocols to image the murine aorta in three dimensions (3D). We delineate state-of-the-art procedures for immunostaining, optical clearing, and imaging with the intent to define the anatomical proximity of the peripheral nervous system with atherosclerotic plaques and the adventitia in atherosclerosis.

Adipo-Clear: A Tissue Clearing Method for Three-Dimensional Imaging of Adipose Tissue

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Cited by 117 •

2018

Due to the high lipid content, adipose tissue has been challenging to visualize using traditional histological methods. Adipo-Clear is a tissue clearing technique that allows robust labeling and high-resolution volumetric fluorescent imaging of adipose tissue. Here, we describe the methods for sample preparation, pretreatment, staining, clearing, and mounting for imaging.

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