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Direct comparison of angiogenesis in natural and synthetic biomaterials reveals that matrix porosity regulates endothelial cell invasion speed and sprout diameter

Acta Biomater. 2021-08; 
William Y Wang, Robert N Kent, Stephanie A Huang, Evan H Jarman, Eve H Shikanov, Christopher D Davidson, Harrison L Hiraki, Daphne Lin, Monica A Wall, Daniel L Matera, Jae-Won Shin, William J Polacheck, Ariella Shikanov, Brendon M Baker
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Proteins, Expression, Isolation and Analysis … Dextran vinyl sulfone hydrogels were formed via a thiol-ene click reaction at 3.25%w/v (pH 7.4, 37 C, 1 hour) solubilized in PBS containing 50 mM HEPES with 12.5 mM MMP-labile crosslinker (GCRDVPMS↓MRGGDRCG, Genscript, Piscataway, NJ) in the presence of argininyl-… Get A Quote

摘要

Vascularization of large, diffusion-hindered biomaterial implants requires an understanding of how extracellular matrix (ECM) properties regulate angiogenesis. Sundry biomaterials assessed across many disparate angiogenesis assays have highlighted ECM determinants that influence this complex multicellular process. However, the abundance of material platforms, each with unique parameters to model endothelial cell (EC) sprouting presents additional challenges of interpretation and comparison between studies. In this work we directly compared the angiogenic potential of commonly utilized natural (collagen and fibrin) and synthetic dextran vinyl sulfone (DexVS) hydrogels in a multiplexed angiogenesis-on-a-chip plat... More

关键词

Angiogenesis, Cell migration, Cell proliferation, Chemotaxis, ECM, Endothelial cells, Hydrogels, Matrix porosity, Microfluidics, Microvasculature, Sprouting Morphogenesis
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