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  • Microfabricated blood vessels for modeling the vascular transport barrier.

Microfabricated blood vessels for modeling the vascular transport barrier.

Nature protocols (2019-04-07)
William J Polacheck, Matthew L Kutys, Juliann B Tefft, Christopher S Chen
ABSTRACT

The vascular endothelium forms the inner lining of blood vessels and actively regulates vascular permeability in response to chemical and physical stimuli. Understanding the molecular pathways and mechanisms that regulate the permeability of blood vessels is of critical importance for developing therapies for cardiovascular dysfunction and disease. Recently, we developed a novel microfluidic human engineered microvessel (hEMV) platform to enable controlled blood flow through a human endothelial lumen within a physiologic 3D extracellular matrix (ECM) into which pericytes and other stromal cells can be introduced to recapitulate tissue-specific microvascular physiology. This protocol describes how to design and fabricate the silicon hEMV device master molds (takes ~1 week) and elastomeric substrates (takes 3 d); how to seed, culture, and apply calibrated fluid shear stress to hEMVs (takes 1-7 d); and how to assess vascular barrier function (takes 1 d) and perform immunofluorescence imaging (takes 3 d).

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Trichloro(1H,1H,2H,2H-perfluorooctyl)silane, 97%
Sigma-Aldrich
HEPES, ≥99.5% (titration)
Sigma-Aldrich
Sodium hydroxide solution, 1.0 N, BioReagent, suitable for cell culture
Sigma-Aldrich
Donkey serum
Sigma-Aldrich
Magnesium chloride hexahydrate, ACS reagent, 99.0-102.0%