Mechanisms of tumor cell extravasation in an in vitro microvascular network platform

被引:233
作者
Chen, Michelle B. [1 ]
Whisler, Jordan A. [1 ]
Jeon, Jessie S. [1 ]
Kamm, Roger D. [1 ,2 ]
机构
[1] MIT, Dept Mech Engn, Cambridge, MA 02139 USA
[2] MIT, Dept Biol Engn, Cambridge, MA 02139 USA
基金
美国国家科学基金会;
关键词
NECROSIS-FACTOR-ALPHA; ENDOTHELIAL-CELLS; CANCER-CELLS; E-SELECTIN; PERMEABILITY; METASTASIS; ADHESION; MODEL; PROLIFERATION; MICROVESSELS;
D O I
10.1039/c3ib40149a
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
A deeper understanding of the mechanisms of tumor cell extravasation is essential in creating therapies that target this crucial step in cancer metastasis. Here, we use a microfluidic platform to study tumor cell extravasation from in vitro microvascular networks formed via vasculogenesis. We demonstrate tight endothelial cell-cell junctions, basement membrane deposition and physiological values of vessel permeability. Employing our assay, we demonstrate impaired endothelial barrier function and increased extravasation efficiency with inflammatory cytokine stimulation, as well as positive correlations between the metastatic potentials of MDA-MB-231, HT-1080, MCF-10A and their extravasation capabilities. High-resolution time-lapse microscopy reveals the highly dynamic nature of extravasation events, beginning with thin tumor cell protrusions across the endothelium followed by extrusion of the remainder of the cell body through the formation of small (similar to 1 mu m) openings in the endothelial barrier which grows in size (similar to 8 mu m) to allow for nuclear transmigration. No disruption to endothelial cell-cell junctions is discernible at 60x, or by changes in local barrier function after completion of transmigration. Tumor transendothelial migration efficiency is significantly higher in trapped cells compared to non-trapped adhered cells, and in cell clusters versus single tumor cells.
引用
收藏
页码:1262 / 1271
页数:10
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