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PMID: 22622237 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

A multi-shear perfusion bioreactor for investigating shear stress effects in endothelial cell constructs.

Lab on a chip ·Vol. 12 ·No. 15 ·2012-08-07 ·页码 2696-703

Rotenberg MY, Ruvinov E, Armoza A, Cohen S

Abstract

Tissue engineering research is increasingly relying on the use of advanced cultivation technologies that provide rigorously-controlled cell microenvironments. Herein, we describe the features of a micro-fabricated Multi-Shear Perfusion Bioreactor (MSPB) designed to deliver up to six different levels of physiologically-relevant shear stresses (1-13 dyne cm(-2)) to six cell constructs simultaneously, during a single run. To attain a homogeneous fluid flow within each construct, flow-distributing nets photo-etched with a set of openings for fluid flow were placed up- and down-stream from each construct. Human umbilical vein endothelial cells (HUVECs) seeded in alginate scaffolds within the MSPB and subjected to three different levels of shear stress for 24 h, responded accordingly by expressing three different levels of the membranal marker Intercellular Adhesion Molecule 1 (ICAM-1) and the phosphorylated endothelial nitric oxide synthetase (eNOS). A longer period of cultivation, 17 d, under two different levels of shear stress resulted in different lengths of cell sprouts within the constructs. Collectively, the HUVEC behaviour within the different constructs confirms the feasibility of using the MSPB system for simultaneously imposing different shear stress levels, and for validating the flow regime in the bioreactor vessel as assessed by the computational fluid dynamic (CFD) model.

MeSH 主题词
Alginates/chemistry Bioreactors Equipment Design Gene Expression Regulation Glucuronic Acid/chemistry Hexuronic Acids/chemistry Human Umbilical Vein Endothelial Cells/cytology,metabolism Humans Hydrodynamics Intercellular Adhesion Molecule-1/genetics Nitric Oxide Synthase Type III/metabolism Phosphorylation Stress, Mechanical Tissue Engineering/instrumentation Tissue Scaffolds/chemistry
化学物质
Alginates Hexuronic Acids Intercellular Adhesion Molecule-1 Glucuronic Acid Nitric Oxide Synthase Type III
作者与单位
共 4 位作者,点击展开单位 / ORCID
Rotenberg Menahem Y
The Avram and Stella Goldstein-Goren Department of Biotechnology Engineering, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.
Ruvinov Emil
Armoza Anna
Cohen Smadar
Article Info
Journal
Lab on a chip
Abbr.
Lab Chip
ISSN
1473-0189
Published
2012-08-07
电子出版
2012-00-23
页码
2696-703
Language
English
Country/Region
England
NLM ID
101128948
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