2014
DOI: 10.1089/ten.tec.2012.0731
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Three-Dimensional Microfluidic Collagen Hydrogels for Investigating Flow-Mediated Tumor-Endothelial Signaling and Vascular Organization

Abstract: Hyperpermeable tumor vessels are responsible for elevated interstitial fluid pressure and altered flow patterns within the tumor microenvironment. These aberrant hydrodynamic stresses may enhance tumor development by stimulating the angiogenic activity of endothelial cells lining the tumor vasculature. However, it is currently not known to what extent shear forces affect endothelial organization or paracrine signaling during tumor angiogenesis. The objective of this study was to develop a three-dimensional (3D… Show more

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Cited by 128 publications
(174 citation statements)
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References 80 publications
(92 reference statements)
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“…38 Briefly, 1 £ 10 6 MDA-MB-231 cells were resuspended in 8 mg/ml neutralized collagen, poured into FEP tubing fit concentrically with a 22G needle (711 mm), and capped with PDMS sleeves (Fig. 1).…”
Section: Resultsmentioning
confidence: 99%
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“…38 Briefly, 1 £ 10 6 MDA-MB-231 cells were resuspended in 8 mg/ml neutralized collagen, poured into FEP tubing fit concentrically with a 22G needle (711 mm), and capped with PDMS sleeves (Fig. 1).…”
Section: Resultsmentioning
confidence: 99%
“…A graded increase in flow that subjected the endothelium to a low shear stress of t D 0.01 dynes/cm 2 up to t D 0.1 dyne/cm 2 over 72 hours was utilized to encourage the establishment of a viable and functional endothelialized channel. 38 Following this initial preconditioning time period, the flow was increased to induce one 2 ) for 6 hours, after which analysis of angiogenic activity (expression of angiogenic factors and vascular permeability) was conducted. The 6h time point was selected to probe the initial and transient endothelial response to flow as well as the subsequent changes in tumor expressed angiogenic genes.…”
Section: Resultsmentioning
confidence: 99%
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