Human 3D vascularized organotypic microfluidic assays to study breast cancer cell extravasation

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A key aspect of cancer metastases is the tendency for specific cancer cells to home to defined subsets of secondary organs. Despite these known tendencies, the underlying mechanisms remain poorly understood. Here we develop a microfluidic 3D in vitro model to analyze organ-specific human breast cancer cell extravasation into bone- and muscle-mimicking microenvironments through a microvascular network concentrically wrapped with mural cells. Extravasation rates and microvasculature permeabilities were significantly different in the bone- mimicking microenvironment compared with unconditioned or myoblast containing matrices. Blocking breast cancer cell A(3) adenosine receptors resulted in higher extravasation rates of cancer cells into themyoblast-containingmatrices compared with untreated cells, suggesting a role for adenosine in reducing extravasation. These results demonstrate the efficacy of our model as a drug screening platform and a promising tool to investigate specific molecular pathways involved in cancer biology, with potential applications to personalized medicine.
Publisher
NATL ACAD SCIENCES
Issue Date
2015-01
Language
English
Article Type
Article
Keywords

A(3) ADENOSINE RECEPTOR; IN-VITRO; MICROVASCULAR NETWORKS; ENDOTHELIAL BARRIER; TUMOR-CELLS; METASTASIS; MIGRATION; GENERATION; GROWTH; MODEL

Citation

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, v.112, no.1, pp.214 - 219

ISSN
0027-8424
DOI
10.1073/pnas.1417115112
URI
http://hdl.handle.net/10203/200791
Appears in Collection
ME-Journal Papers(저널논문)
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