Advances in microfluidic platforms for analyzing and regulating human pluripotent stem cells.

Abstract:

:Microfluidic devices employ submillimeter length scale control of flow to achieve high-resolution spatial and temporal control over the microenvironment, providing powerful tools to elucidate mechanisms of human pluripotent stem cell (hPSC) regulation and to elicit desired hPSC fates. In addition, microfluidics allow control of paracrine and juxtracrine signaling, thereby enabling fabrication of microphysiological systems comprised of multiple cell types organized into organs-on-a-chip. Microfluidic cell culture systems can also be integrated with actuators and sensors, permitting construction of high-density arrays of cell-based biosensors for screening applications. This review describes recent advances in using microfluidics to understand mechanisms by which the microenvironment regulates hPSC fates and applications of microfluidics to realize the potential of hPSCs for in vitro modeling and screening applications.

journal_name

Curr Opin Genet Dev

authors

Qian T,Shusta EV,Palecek SP

doi

10.1016/j.gde.2015.07.007

subject

Has Abstract

pub_date

2015-10-01 00:00:00

pages

54-60

eissn

0959-437X

issn

1879-0380

pii

S0959-437X(15)00082-9

journal_volume

34

pub_type

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