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10.1063/1.4930120

http://scihub22266oqcxt.onion/10.1063/1.4930120
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C4560713!4560713!26392835
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suck abstract from ncbi


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pmid26392835      Biomicrofluidics 2015 ; 9 (5): ä
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  • A pump-free membrane-controlled perfusion microfluidic platform #MMPMID26392835
  • Goral VN; Tran E; Yuen PK
  • Biomicrofluidics 2015[Sep]; 9 (5): ä PMID26392835show ga
  • In this article, we present a microfluidic platform for passive fluid pumping for pump-free perfusion cell culture, cell-based assay, and chemical applications. By adapting the passive membrane-controlled pumping principle from the previously developed perfusion microplate, which utilizes a combination of hydrostatic pressure generated by different liquid levels in the wells and fluid wicking through narrow strips of a porous membrane connecting the wells to generate fluid flow, a series of pump-free membrane-controlled perfusion microfluidic devices was developed and their use for pump-free perfusion cell culture and cell-based assays was demonstrated. Each pump-free membrane-controlled perfusion microfluidic device comprises at least three basic components: an open well for generating fluid flow, a micron-sized deep chamber/channel for cell culture or for fluid connection, and a wettable porous membrane for controlling the fluid flow. Each component is fluidically connected either by the porous membrane or by the micron-sized deep chamber/channel. By adapting and incorporating the passive membrane-controlled pumping principle into microfluidic devices, all the benefits of microfluidic technologies, such as small sample volumes, fast and efficient fluid exchanges, and fluid properties at the micro-scale, can be fully taken advantage of with this pump-free membrane-controlled perfusion microfluidic platform.
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