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Soitu, C.

Publications and source records attributed to Soitu, C..

2 recordsLinked to original sources

Creating wounds in cell monolayers using micro-jets

Many wound-healing assays are used in cell biology and biomedicine; they are often labor intensive and/or require specialized and costly equipment. We describe a contactless method to create wounds with any imaginable 2D pattern in cell monolayers using micro-jets of either media or an immiscible and biocompatible fluorocarbon (i.e., FC40). We also combine this with another method that allows automation and multiplexing using standard Petri dishes. A dish is filled with a thin film of media overlaid with FC40, and the two liquids reshaped into an array of microchambers in minutes. Each chamber in such a grid is isolated from others by fluid walls of FC40. Cells are now added, allowed to grow into a monolayer, and wounds created using the microjets; then, healing is monitored by microscopy. As arrays of chambers can be made using the media and Petri dishes familiar to biologists, and as dishes fit seamlessly into their incubators, microscopes, and workflows, we anticipate this assay will find wide application in biomedicine.

bioengineering

Jet-printing microfluidic devices on demand

There is an unmet demand for microfluidics in biomedicine. We describe contactless fabrication of microfluidic circuits on standard Petri dishes using just a dispensing needle, syringe pump, 3-way traverse, cell-culture media, and an immiscible fluorocarbon (FC40). A submerged micro-jet of FC40 is projected through FC40 and media on to the bottom of a dish, where it washes media away to leave liquid fluorocarbon walls pinned to the substrate by interfacial forces. Such fluid walls can be built into almost any imaginable 2D circuit in minutes, which we exploit to clone cells using limiting dilution in a way that beats the Poisson limit, sub-culture adherent cells, and feed arrays of cells continuously for a week. This general method should have wide application in biomedicine. One sentence summaryIn the everyday world, we cannot build complex structures out of liquids as they collapse into puddles; in the microworld we can.

bioengineering