Sacrificial Mold Printing

Sacrificial mold printing is a fabrication technique that uses a temporary, printed structure to create complex internal cavities or channels in a permanent material. In a typical workflow, a fugitive ink is deposited in the desired geometry, surrounded by a hydrogel, elastomer, or other matrix, and then removed by dissolution, melting, or mechanical extraction, leaving a hollow network. This approach gives bioengineers control over channel size and connectivity for perfusable tissue constructs, organ-on-chip devices, and other biomimetic systems. By addressing the difficulty of manufacturing enclosed features, sacrificial mold printing supports more realistic models of transport, vascularization, and tissue function.

Sacrificial Mold Printing - Related Videos

Research

JoVE Journal - Immunology and Infection

Printing Thermoresponsive Reverse Molds for the Creation of Patterned Two-component Hydrogels for 3D Cell Culture

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Cited by 60 •

2013

A bioprinter was used to create patterned hydrogels based on a sacrificial mold. The poloxamer mold was backfilled with a second hydrogel and then eluted, leaving voids which were filled with a third hydrogel. This method uses fast elution and good printability of poloxamer to generate complex architectures from biopolymers.

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

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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.

Process of Making Three-dimensional Microstructures using Vaporization of a Sacrificial Component

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Cited by 7 •

2013

The Vaporization of a Sacrificial Component (VaSC) process is used to fabricate microvascular structures. This procedure uses sacrificial poly(lactic) acid fibers to form hollow microchannels with precise 3D geometric positioning provided by laser micromachined guide plates.

Research

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

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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.

Production and Use of Customizable Agarose Molds for Scaffold-Free Mouse Ovarian Follicle Culture

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Cited by 2 •

2025

We describe methods to culture ovarian follicles in a novel scaffold-free agarose mold that complement in vitro gametogenesis.

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