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VEGF-delivering PEG hydrogels promote vascularization in the porcine subcutaneous space

J Biomed Mater Res A. 2024-01; 
Michelle J Quizon, Juline N Deppen, Graham F Barber, Pranav P Kalelkar, María M Coronel, Rebecca D Levit, Andres J Garcia
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Catalog Peptides … The resultant functionalized macromer was then crosslinked with 3.61 mM VPM bi-cysteine peptide (GCRDVPMSMRGGDRCG, Genscript), which was calculated for stoichiometric … Get A Quote

摘要

For cell therapies, the subcutaneous space is an attractive transplant site due to its large surface area and accessibility for implantation, monitoring, biopsy, and retrieval. However, its poor vascularization has catalyzed research to induce blood vessel formation within the site to enhance cell revascularization and survival. Most studies focus on the subcutaneous space of rodents, which does not recapitulate important anatomical features and vascularization responses of humans. Herein, we evaluate biomaterial-driven vascularization in the porcine subcutaneous space. Additionally, we report the first use of cost-effective fluorescent microspheres to quantify perfusion in the porcine subcutaneous space. We in... More

关键词

PEG, VEGF, blood vessels, cell transplantation, perfusion