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Protein-engineered hydrogels enhance the survival of induced pluripotent stem cell-derived endothelial cells for treatment of peripheral arterial disease.

Biomater Sci. 2018-02; 
FosterAbbygail A,DewiRuby E,CaiLei,HouLuqia,StrassbergZachary,AlcazarCynthia A,HeilshornSarah C,HuangNg
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Peptide Synthesis … PEG-P1-PNIPAM copolymers were synthesized as described previously. 19,20 Briefly, peptide P1 (EYPPYPPPPYPSGC, M w 1563 g mol −1 ) was purchased through custom peptide synthesis from Genscript Corp (Piscataway, NJ, USA) … Get A Quote

摘要

A key feature of peripheral arterial disease (PAD) is damage to endothelial cells (ECs), resulting in lower limb pain and restricted blood flow. Recent preclinical studies demonstrate that the transplantation of ECs via direct injection into the affected limb can result in significantly improved blood circulation. Unfortunately, the clinical application of this therapy has been limited by low cell viability and poor cell function. To address these limitations we have developed an injectable, recombinant hydrogel, termed SHIELD (Shear-thinning Hydrogel for Injectable Encapsulation and Long-term Delivery) for cell transplantation. SHIELD provides mechanical protection from cell membrane damage during syri... More

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