Integration of silicon chip microstructures for in-line microbial cell lysis in soft microfluidics.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 37083052.
- Also identified by DOI 10.1039/d2lc00896c and PMC identifier 10259373.
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Abstract
The paper presents fabrication methodologies that integrate silicon components into soft microfluidic devices to perform microbial cell lysis for biological applications. The integration methodology consists of a silicon chip that is fabricated with microstructure arrays and embedded in a microfluidic device, which is driven by piezoelectric actuation to perform cell lysis by physically breaking microbial cell walls <i>via</i> micromechanical impaction. We present different silicon microarray geometries, their fabrication techniques, integration of said micropatterned silicon impactor chips into microfluidic devices, and device operation and testing on synthetic microbeads and two yeast species (<i>S. cerevisiae</i> and <i>C. albicans</i>) to evaluate their efficacy. The generalized strategy developed for integration of the micropatterned silicon impactor chip into soft microfluidic devices can serve as an important process step for a new class of hybrid silicon-polymeric devices for future cellular processing applications. The proposed integration methodology can be scalable and integrated as an in-line cell lysis tool with existing microfluidics assays.
Medical subject headings
- Microfluidics
- Microfluidic Analytical Techniques