Polydimethylsiloxane Microchannels

Polydimethylsiloxane (PDMS) microchannels are microscale fluidic conduits molded in elastomeric silicone, enabling precise control of liquids and biological samples. They operate by directing fluids through engineered networks in which channel geometry, surface properties, and pressure or capillary forces regulate laminar flow, mixing, and transport; PDMS also provides optical clarity and gas permeability for biological observation. In bioengineering, these devices support cell culture, tissue models, chemical gradients, droplet generation, and organ-on-chip systems while using small sample volumes. Their accessible fabrication and microscopy compatibility help researchers study physiology, disease mechanisms, drug responses, and engineered tissues.

Polydimethylsiloxane Microchannels - Related Videos

Education

JoVE Science Education - Engineering

Kinetics of Addition Polymerization to Polydimethylsiloxane

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2023

Source: Kerry M. Dooley and Michael G. Benton, Department of Chemical Engineering, Louisiana State University, Baton Rouge, LA Polymers are molecules consisting of many repeating monomer units that are chemically bonded into long chains. They exhibit a broad range of physical properties, which are affected by their chemical structure, molecular weight and degree of polymerization. The polymer industry manufactures thousands of raw materials used in a broad variety of commercial products.1,2 The...

Research

JoVE Journal - Bioengineering

Automated Lipid Bilayer Membrane Formation Using a Polydimethylsiloxane Thin Film

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Cited by 4 •

2016

We demonstrate a storable, transportable lipid bilayer formation system. A lipid bilayer membrane can be formed within 1 hr with over 80% success rate when a frozen membrane precursor is brought to ambient temperature. This system will reduce laborious processes and expertise associated with ion channels.

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.

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.

Research

JoVE Journal - Bioengineering
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Polydimethylsiloxane-polycarbonate Microfluidic Devices for Cell Migration Studies Under Perpendicular Chemical and Oxygen Gradients

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Cited by 13 •

2017

The control of chemical and oxygen gradients is essential for cell cultures. This paper reports a polydimethylsiloxane-polycarbonate (PDMS-PC) microfluidic device capable of reliably generating combinations of chemical and oxygen gradients for cell migration studies, which can be practically utilized in biological labs without sophisticated instrumentation.

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