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Hydrophobic Patterning‐Based 3D Microfluidic Cell Culture Assay
Author(s) -
Han Sewoon,
Kim Junghyun,
Li Rui,
Ma Alice,
Kwan Vincent,
Luong Kevin,
Sohn Lydia L.
Publication year - 2018
Publication title -
advanced healthcare materials
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.288
H-Index - 90
eISSN - 2192-2659
pISSN - 2192-2640
DOI - 10.1002/adhm.201800122
Subject(s) - microfluidics , nanotechnology , 3d cell culture , materials science , cell , chemistry , biochemistry
Engineering physiologically relevant in vitro models of human organs remains a fundamental challenge. Despite significant strides made within the field, many promising organ‐on‐a‐chip models fall short in recapitulating cellular interactions with neighboring cell types, surrounding extracellular matrix (ECM), and exposure to soluble cues due, in part, to the formation of artificial structures that obstruct >50% of the surface area of the ECM. Here, a 3D cell culture platform based upon hydrophobic patterning of hydrogels that is capable of precisely generating a 3D ECM within a microfluidic channel with an interaction area >95% is reported. In this study, for demonstrative purposes, type I collagen (COL1), Matrigel (MAT), COL1/MAT mixture, hyaluronic acid, and cell‐laden MAT are formed in the device. Three potential applications are demonstrated, including creating a 3D endothelium model, studying the interstitial migration of cancer cells, and analyzing stem cell differentiation in a 3D environment. The hydrophobic patterned‐based 3D cell culture device provides the ease‐of‐fabrication and flexibility necessary for broad potential applications in organ‐on‐a‐chip platforms.

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