Flow shear stress regulates endothelial barrier function and expression of angiogenic factors in a 3D microfluidic tumor vascular model

被引:160
作者
Buchanan, Cara F. [1 ]
Verbridge, Scott S. [1 ]
Vlachos, Pavlos P. [2 ]
Rylander, Marissa Nichole [1 ,3 ]
机构
[1] Wake Forest Univ, Sch Biomed Engn & Sci, Virginia Tech, Blacksburg, VA 24061 USA
[2] Purdue Univ, Dept Mech Engn, W Lafayette, IN 47907 USA
[3] Virginia Tech, Dept Mech Engn, Blacksburg, VA USA
基金
美国国家科学基金会;
关键词
Angiopoietin; Collagen Hydrogel; Permeability; Tissue Engineering; Tumorigenesis; VEGF; HYDRAULIC CONDUCTIVITY; GENE-EXPRESSION; NITRIC-OXIDE; SOLID TUMORS; GROWTH-FACTOR; IN-VITRO; INTERSTITIAL PRESSURE; CELL MIGRATION; BLOOD-FLOW; FLUID;
D O I
10.4161/19336918.2014.970001
中图分类号
Q2 [细胞生物学];
学科分类号
071013 [干细胞生物学];
摘要
Endothelial cells lining blood vessels are exposed to various hemodynamic forces associated with blood flow. These include fluid shear, the tangential force derived from the friction of blood flowing across the luminal cell surface, tensile stress due to deformation of the vessel wall by transvascular flow, and normal stress caused by the hydrodynamic pressure differential across the vessel wall. While it is well known that these fluid forces induce changes in endothelial morphology, cytoskeletal remodeling, and altered gene expression, the effect of flow on endothelial organization within the context of the tumor microenvironment is largely unknown. Using a previously established microfluidic tumor vascular model, the objective of this study was to investigate the effect of normal (4 dyn/cm(2)), low (1 dyn/cm2), and high (10 dyn/cm(2)) microvascular wall shear stress (WSS) on tumor-endothelial paracrine signaling associated with angiogenesis. It is hypothesized that high WSS will alter the endothelial phenotype such that vascular permeability and tumor-expressed angiogenic factors are reduced. Results demonstrate that endothelial permeability decreases as a function of increasing WSS, while co-culture with tumor cells increases permeability relative to mono-cultures. This response is likely due to shear stress-mediated endothelial cell alignment and tumor-VEGF-induced permeability. In addition, gene expression analysis revealed that high WSS (10 dyn/cm(2)) significantly down-regulates tumor-expressed MMP9, HIF1, VEGFA, ANG1, and ANG2, all of which are important factors implicated in tumor angiogenesis. This result was not observed in tumor mono-cultures or static conditioned media experiments, suggesting a flow-mediated paracrine signaling mechanism exists with surrounding tumor cells that elicits a change in expression of angiogenic factors. Findings from this work have significant implications regarding low blood velocities commonly seen in the tumor vasculature, suggesting high shear stress- regulation of angiogenic activity is lacking in many vessels, thereby driving tumor angiogenesis.
引用
收藏
页码:517 / 524
页数:8
相关论文
共 62 条
[1]
Vascular Mechanobiology - Endothelial Cell Responses to Fluid Shear Stress - [J].
Ando, Joji ;
Yamamoto, Kimiko .
CIRCULATION JOURNAL, 2009, 73 (11) :1983-1992
[2]
Role of p38 MAP kinase in endothelial cell alignment induced by fluid shear stress [J].
Azuma, N ;
Akasaka, N ;
Kito, H ;
Ikeda, M ;
Gahtan, V ;
Sasajima, T ;
Sumpio, BE .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2001, 280 (01) :H189-H197
[3]
TRANSPORT OF FLUID AND MACROMOLECULES IN TUMORS .1. ROLE OF INTERSTITIAL PRESSURE AND CONVECTION [J].
BAXTER, LT ;
JAIN, RK .
MICROVASCULAR RESEARCH, 1989, 37 (01) :77-104
[4]
Stretch and Shear Interactions Affect Intercellular Junction Protein Expression and Turnover in Endothelial Cells [J].
Berardi, Danielle E. ;
Tarbell, John M. .
CELLULAR AND MOLECULAR BIOENGINEERING, 2009, 2 (03) :320-331
[5]
BOUCHER Y, 1990, CANCER RES, V50, P4478
[6]
Cross-talk between endothelial and breast cancer cells regulates reciprocal expression of angiogenic factors in vitro [J].
Buchanan, Cara F. ;
Szot, Christopher S. ;
Wilson, Tia D. ;
Akman, Steven ;
Metheny-Barlow, Linda J. ;
Robertson, John L. ;
Freeman, Joseph W. ;
Rylander, Marissa Nichole .
JOURNAL OF CELLULAR BIOCHEMISTRY, 2012, 113 (04) :1142-1151
[7]
Buchanan CF, 2013, TISSUE ENG C
[8]
Tumor cell cycle arrest induced by shear stress: Roles of integrins and Smad [J].
Chang, Shun-Fu ;
Chang, Cheng Allen ;
Lee, Ding-Yu ;
Leet, Pei-Ling ;
Yeh, Yu-Ming ;
Yeh, Chiuan-Ren ;
Cheng, Cheng-Kung ;
Chien, Shu ;
Chiu, Jeng-Jiann .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2008, 105 (10) :3927-3932
[9]
Shear-induced increase in hydraulic conductivity in endothelial cells is mediated by a nitric oxide-dependent mechanism [J].
Chang, YS ;
Yaccino, JA ;
Lakshminarayanan, S ;
Frangos, JA ;
Tarbell, JM .
ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2000, 20 (01) :35-42
[10]
DNA microarray analysis of gene expression in endothelial cells in response to 24-h shear stress [J].
Chen, BPC ;
Li, YS ;
Zhao, YH ;
Chen, KD ;
Li, S ;
Lao, JM ;
Yuan, SL ;
Shyy, JYJ ;
Chien, S .
PHYSIOLOGICAL GENOMICS, 2001, 7 (01) :55-63