Microfluidic fiber spinning for 3D bioprinting: Harnessing microchannels to build macrotissues
Federico Serpe; Carlo Massimo Casciola; Giancarlo Ruocco; Gianluca Cidonio; Chiara Scognamiglio · 2024 · International Journal of Bioprinting
WASTE classifies this as Negative / Null Result Report · AI classification, approximate
The study found no significant effect — useful as a negative control or null benchmark for your own design.
Abstract
Microfluidics is rapidly revolutionizing the scientific panorama, providing unmatched high-throughput platforms that find application in numerous areas of physics, chemistry, biology, and materials science. Recently, microfluidic chips have been proposed, in combination with bioactive materials, as promising tools for spinning cell-laden fibers with on-demand characteristics. However, cells encapsulated in filaments produced via microfluidic spinning technology are confined in a quasi-three-dimensional (3D) environment that fails to replicate the intricate 3D architecture of biological tissues
Abstract by Federico Serpe; Carlo Massimo Casciola; Giancarlo Ruocco; Gianluca Cidonio; Chiara Scognamiglio, International Journal of Bioprinting (2024) — licensed CC BY 4.0.
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Metadata source: OpenAlex · DOI 10.36922/ijb.1404
