Custom Tissue Molds

Custom tissue molds are designed structures that shape biomaterials, cells, or tissue-engineered constructs into defined three-dimensional geometries, supporting controlled fabrication in bioengineering. Researchers fill the mold with a hydrogel, polymer, or cell-containing material, then allow it to solidify through gelation, crosslinking, or other curing processes before removing the formed construct. Mold dimensions and surface features can guide tissue architecture, including channels, compartments, and anatomical contours. This approach supports reproducible production of scaffolds and organ-specific models for studying tissue development, evaluating biomaterials, and developing regenerative medicine strategies, while enabling designs tailored to particular experimental or clinical requirements.

Custom Tissue Molds - Related Videos

Research

JoVE Journal - Bioengineering

Custom Engineered Tissue Culture Molds from Laser-etched Masters

0 Views •

Cited by 8 •

2018

Herein we present a rapid, facile, and low-cost method for fabricating custom polydimethylsiloxane molds that can be used for producing hydrogel-based engineered tissues with complex geometries. We additionally describe results from mechanical and histological assessments conducted on engineered cardiac tissues produced using this technique.

Research

JoVE Journal - Bioengineering
Free Sample

Fabrication of Custom Agarose Wells for Cell Seeding and Tissue Ring Self-assembly Using 3D-Printed Molds

0 Views •

Cited by 27 •

2018

This protocol describes a platform for fabricating self-assembled tissue rings in variable sizes using a customized 3D-printed plastic mold. PDMS negatives are cured in the 3D-printed mold; then agarose is cast in the cured PDMS negatives. Cells are seeded into the resulting agarose wells where they aggregate into tissue rings.

Rapid and Low-cost Prototyping of Medical Devices Using 3D Printed Molds for Liquid Injection Molding

0 Views •

Cited by 34 •

2014

We have devised a method for low-cost and rapid prototyping of liquid elastomer rubber injection molded devices by using fused deposition modeling 3D printers for mold design and a modified desiccator as a liquid injection system.

Wet-spinning-based Molding Process of Gelatin for Tissue Regeneration

0 Views •

Cited by 5 •

2019

We developed and describe a protocol based on the wet spinning concept, for the construction of gelatin-based biomaterials used for the application of tissue engineering.

A Net Mold-based Method of Scaffold-free Three-Dimensional Cardiac Tissue Creation

0 Views •

Cited by 6 •

2018

This protocol describes a net mold-based method to create three-dimensional scaffold-free cardiac tissues with satisfactory structural integrity and synchronous beating behavior.

View All Results

FAQs

Related Topics