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Journal article

A Passive Microfluidic Device for Chemotaxis Studies

From

Magna Græcia University1

Department of Chemical and Biochemical Engineering, Technical University of Denmark2

PROSYS - Process and Systems Engineering Centre, Department of Chemical and Biochemical Engineering, Technical University of Denmark3

This work presents a disposable passive microfluidic system, allowing chemotaxis studies, through the generation of a concentration gradient. The device can handle liquid flows without an external supply of pressure or electric gradients, but simply using gravity force. It is able to ensure flow rates of 10 µL/h decreasing linearly with 2.5% in 24 h.

The device is made of poly(methylmethacrylate) (PMMA), a biocompatible material, and it is fabricated by micro-milling and solvent assisted bonding. It is assembled into a mini incubator, designed properly for cell biology studies in passive microfluidic devices, which provides control of temperature and humidity levels, a contamination-free environment for cells with air and 5% of CO2.

Furthermore, the mini incubator can be mounted on standard inverted optical microscopes. By using our microfluidic device integrated into the mini incubator, we are able to evaluate and follow in real-time the migration of any cell line to a chemotactic agent. The device is validated by showing cell migration at a rate of 0.36 µm/min, comparable with the rates present in scientific literature.

Language: English
Publisher: MDPI
Year: 2019
Pages: 551
ISSN: 2072666x
Types: Journal article
DOI: 10.3390/mi10080551
ORCIDs: Krühne, Ulrich , 0000-0001-6156-887X , 0000-0003-3004-7806 , 0000-0001-6313-1866 , 0000-0002-7844-8230 and 0000-0001-5886-4678

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