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Microfluidic device for studying traumatic brain injury

chapter
posted on 2017-01-01, 00:00 authored by Y C Yap, T C Dickson, A E King, M C Breadmore, Rosanne GuijtRosanne Guijt
© 2017, Springer Science+Business Media LLC. Throughout the world, traumatic brain injury (TBI), for example, as a result of motor vehicle accident, is a major cause of mortality and lifelong disability in children and young adults. Studies show that axonal pathology and degeneration can cause significant functional impairment and can precede, and sometimes cause, neuronal death in several neurological disorders including TBI, creating a compelling need to understand the mechanisms of axon degeneration. Microfluidic devices that allow manipulation of fluids in channels with typical dimensions of tens to hundreds of micrometers have emerged as a powerful platform for such studies due to their ability to isolate and direct the growth of axons. Here, we describe a new microfluidic platform that can be used to study TBI by applying very mild (0.5%) and mild (5%) stretch injury to individual cortical axons through the incorporation of microfluidic valve technology into a compartmented microfluidic-culturing device. This device is unique due to its ability to study the neuronal response to axonal stretch injury in a fluidically isolated microenvironment.

History

Title of book

Stem cell technologies in neuroscience

Volume

126

Chapter number

10

Pagination

145 - 156

Publisher

Springer

Place of publication

Berlin, Germany

ISSN

0893-2336

eISSN

1940-6045

Language

eng

Publication classification

B Book chapter; B1.1 Book chapter

Copyright notice

2017, Springer

Extent

15

Editor/Contributor(s)

Amit Srivastava, Evan Snyder, Yang Teng

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