Georgia Papavasiliou

Affiliations: 
Biomedical Engineering Illinois Institute of Technology, Chicago, IL, United States 
Area:
Biomedical Engineering, Materials Science Engineering, Cell Biology
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"Georgia Papavasiliou"
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Publications

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He YJ, Santana MF, Staneviciute A, et al. (2021) Cell-Laden Gradient Hydrogel Scaffolds for Neovascularization of Engineered Tissues. Advanced Healthcare Materials. e2001706
Pimentel MB, Borges FTP, Teymour F, et al. (2020) An in vitro tissue model for screening sustained release of phosphate-based therapeutic attenuation of pathogen-induced proteolytic matrix degradation. Journal of Materials Chemistry. B
He YJ, Santana MF, Moucka M, et al. (2019) Immobilized RGD concentration and Proteolytic Degradation Synergistically Enhance Vascular Sprouting within Hydrogel Scaffolds of Varying Modulus. Journal of Biomaterials Science. Polymer Edition. 1-28
He YJ, Young DA, Mededovic M, et al. (2018) Protease-Sensitive Hydrogel Biomaterials with Decoupled Modulus and Adhesion Ligand Gradients for 3D Vascular Sprouting. Biomacromolecules
Young DA, Pimentel MB, Lima LD, et al. (2017) Design and characterization of hydrogel nanoparticles with tunable network characteristics for sustained release of a VEGF-mimetic peptide. Biomaterials Science
Vaicik MK, Morse M, Blagajcevic A, et al. (2015) Hydrogel-Based Engineering of Beige Adipose Tissue. Journal of Materials Chemistry. B, Materials For Biology and Medicine. 3: 7903-7911
Larkin S, Larson J, Holmes C, et al. (2015) 3D widefield light microscope image reconstruction without dyes Progress in Biomedical Optics and Imaging - Proceedings of Spie. 9330
Sokic S, Christenson M, Larson J, et al. (2014) In situ generation of cell-laden porous MMP-sensitive PEGDA hydrogels by gelatin leaching. Macromolecular Bioscience. 14: 731-9
Sokic S, Larson JC, Larkin SM, et al. (2014) Label-free nondestructive imaging of vascular network structure in 3D culture. Microvascular Research. 92: 72-8
Sokic S, Christenson MC, Larson JC, et al. (2014) Evaluation of MMP substrate concentration and specificity for neovascularization of hydrogel scaffolds Biomaterials Science. 2: 1343-1354
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