Microchannel Fabrication

Microchannel fabrication is the process of creating networks of micrometer-scale channels in materials such as glass, silicon, polymers, or elastomers, enabling precise control of small fluid volumes. In bioengineering, methods including photolithography, soft lithography, laser machining, and micromilling define channel patterns that are transferred into a substrate and sealed to form enclosed pathways. Channel dimensions, surface properties, flow rate, and pressure determine transport through laminar flow, allowing fluids, cells, and biomolecules to be positioned or mixed predictably. These devices support lab-on-a-chip systems, organ-on-a-chip models, cell culture, diagnostics, drug screening, and tissue engineering while reducing sample and reagent use.

Microchannel Fabrication - Related Videos

Research

JoVE Journal - Engineering

Microembossing: A Convenient Process for Fabricating Microchannels on Nanocellulose Paper-Based Microfluidics

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Cited by 3 •

2023

This protocol describes a straightforward process that utilizes convenient plastic micro-molds for simple microembossing operations to fabricate microchannels on nanofibrillated cellulose paper, achieving a minimum width of 200 µm.

Procedure for the Development of Multi-depth Circular Cross-sectional Endothelialized Microchannels-on-a-chip

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Cited by 5 •

2013

A microchannels-on-a-chip platform was developed by the combination of photolithographic reflowable photoresist technique, soft lithography, and microfluidics. The endothelialized microchannels platform mimics the three-dimensional (3D) geometry of in vivo microvessels, runs under controlled continuous perfusion flow, allows for high-quality and real-time imaging and can be applied for microvascular research.

Fabrication of the Thermoplastic Microfluidic Channels

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2008

Here we demonstrate how to fabricate thermoplastic microfluidic chips using hot embossing and heat sealing. Then we demonstrate how to use in situ light directed surface grafting and polymerization through the sealed chip to form the composite solid phase columns.

Preparation of 3D Collagen Gels and Microchannels for the Study of 3D Interactions In Vivo

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Cited by 16 •

2016

Collagen is a core component of the ECM, and provides essential cues for several cellular processes ranging from migration to differentiation and proliferation. Provided here is a protocol for embedding cells within 3D collagen hydrogels, and a more advanced technique for generating randomized or aligned collagen matrices using PDMS microchannels.

Research

JoVE Journal - Bioengineering
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Microfluidic Fabrication of Polymeric and Biohybrid Fibers with Predesigned Size and Shape

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Cited by 12 •

2014

Two adjacent fluids passing through a grooved microfluidic channel can be directed to form a sheath around a prepolymer core; thereby determining both shape and cross-section. Photoinitiated polymerization, such as thiol click chemistry, is well suited for rapidly solidifying the core fluid into a microfiber with predetermined size and shape.

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