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Rapid Prototyping of Cell Culture Microdevices Using Parylene-Coated 3D Prints

2021-08-04

Abstract excerpt

Fabrication of microfluidic devices by photolithography generally requires specialized training and access to a cleanroom. As an alternative, 3D printing enables cost-effective fabrication of microdevices with complex features that would be suitable for many biomedical applications. However, commonly used resins are cytotoxic and unsuitable for devices involving cells. Furthermore, 3D prints are generally refracto...

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Literature Corpus work
4069c183-2b65-5792-9f59-2ed8c0d92d04
DOI
10.1101/2021.08.02.454773
Open publication

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Rapid Prototyping of Cell Culture Microdevices Using Parylene-Coated 3D PrintsDOI 10.1101/2021.08.02.454773
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