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Laterally Confined Microfluidic Patterning of Cells for Engineering Spatially Defined Vascularization.


ABSTRACT: A biofabrication strategy for creating planar multiscale protein, hydrogel, and cellular patterns, and simultaneously generating microscale topographical features is developed that laterally confines the patterned cells and direct their growth in cell permissive hydrogels.

SUBMITTER: Rezaei Nejad H 

PROVIDER: S-EPMC5376063 | biostudies-literature | 2016 Oct

REPOSITORIES: biostudies-literature

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Laterally Confined Microfluidic Patterning of Cells for Engineering Spatially Defined Vascularization.

Rezaei Nejad Hojatollah H   Goli Malekabadi Zahra Z   Kazemzadeh Narbat Mehdi M   Annabi Nasim N   Mostafalu Pooria P   Tarlan Farhang F   Zhang Yu Shrike YS   Hoorfar Mina M   Tamayol Ali A   Khademhosseini Ali A   Khademhosseini Ali A  

Small (Weinheim an der Bergstrasse, Germany) 20160811 37


A biofabrication strategy for creating planar multiscale protein, hydrogel, and cellular patterns, and simultaneously generating microscale topographical features is developed that laterally confines the patterned cells and direct their growth in cell permissive hydrogels. ...[more]

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