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Click and bioorthogonal hyaluronic acid hydrogels as an ultra-tunable platform for the investigation of cell-material interactions

Bioact Mater. 2023-01; 
Nathan Lagneau, Pierre Tournier, Boris Halgand, François Loll, Yves Maugars, Jérôme Guicheux, Catherine Le Visage, Vianney Delplace
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Peptide Synthesis … RGD-N 3 peptide (N 3 -KGSGSGRGDSP; GenScript) were first dissolved in DMEM medium … cells were stimulated with medium containing 50 ng/mL of human tumor necrosis factor-α (… Get A Quote

摘要

The cellular microenvironment plays a major role in the biological functions of cells. Thus, biomaterials, especially hydrogels, which can be design to mimic the cellular microenvironment, are being increasingly used for cell encapsulation, delivery, and 3D culture, with the hope of controlling cell functions. Yet, much remains to be understood about the effects of cell-material interactions, and advanced synthetic strategies need to be developed to independently control the mechanical and biochemical properties of hydrogels. To address this challenge, we designed a new hyaluronic acid (HA)-based hydrogel platform using a click and bioorthogonal strain-promoted azide-alkyne cycloaddition (SPAAC) reaction. This ... More

关键词

Cell-material interactions, Click and bioorthogonal chemistry, Hyaluronic acid, Hydrogels, Mesenchymal stromal cells, Secretome