Bioprintable Hydrogel

Bioprintable hydrogels are water-rich, three-dimensional biomaterials formulated for extrusion or other additive manufacturing approaches in bioengineering. Their polymer networks flow under printing conditions and then solidify through physical or chemical crosslinking, allowing patterned structures to retain their shape while supporting embedded cells or biomolecules. By tuning properties such as viscosity, gelation behavior, stiffness, and biodegradability, researchers can create constructs that resemble aspects of native tissue microenvironments. These materials support applications in tissue engineering, regenerative medicine, organoid culture, disease modeling, and drug screening, while helping advance the fabrication of customized, biologically active structures.

Bioprintable Hydrogel - Related Videos

Research

JoVE Journal - Bioengineering

Bioprinting Cellularized Constructs Using a Tissue-specific Hydrogel Bioink

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Cited by 59 •

2016

We describe a set of protocols that together provide a tissue-mimicking hydrogel bioink with which functional and viable 3-D tissue constructs can be bioprinted for use in in vitro screening applications.

Research

JoVE Journal - Cancer Research
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Bioprinting of Hydrogel Tumor Slices as a 3D Model for Mantle Cell Lymphoma

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2025

This protocol provides a detailed description of the generation, culture, and analysis of mantle cell lymphoma in 3D printed hydrogel tumor slices.

Viability of Bioprinted Cellular Constructs Using a Three Dispenser Cartesian Printer

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Cited by 6 •

2015

A Cartesian bioprinter was designed and fabricated to allow multi-material deposition in precise, reproducible geometries, while also allowing control of environmental factors. Utilizing the three-dimensional bioprinter, complex and viable constructs may be printed and easily reproduced.

3D Bioprinting Phototunable Hydrogels to Study Fibroblast Activation

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Cited by 3 •

2023

This article describes how to 3D bioprint phototunable hydrogels to study extracellular matrix stiffening and fibroblast activation.

Automated Robotic Dispensing Technique for Surface Guidance and Bioprinting of Cells

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Cited by 9 •

2016

This protocol describes a bioprinting methodology using an automated robotic depositing system that incorporates etched topographical guidance cues with the precision deposition of a cell bearing hydrogel bioink. The printed cells are directly delivered to the etched features and are able to sense and orientate with them.

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