Nature Communications · 2021 · 89 citations · 27 references
Cell adhesion has tremendous impact on the function of culture platforms and implants. Cell-adhesive proteins and peptides have been extensively used for decades to promote cell adhesion, however, their application suffers from their easy enzymatic degradation, difficulty in large-scale preparation and expensiveness. To develop the next-generation cell-adhesive materials, we mimic the cell adhesion functions and mechanisms of RGD and KRSR peptides and design cell-adhesive cationic-hydrophobic amphiphilic β-amino acid polymers that are stable upon proteolysis and easily prepared in large scale at low cost. The optimal polymer strongly promotes cell adhesion, using preosteoblast cell as a model, by following dual mechanisms that are independent of sequence and chirality of the statistic copolymer. Our strategy opens avenues in designing the next-generation cell-adhesive materials and may guide future studies and applications.
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Nanoscale architecture of integrin-based cell adhesions
Pakorn Kanchanawong, Gleb Shtengel, Ana M. Pasapera et al. · Nature · 2010 · 1.5K citations
Integrin-based Cell Adhesions, Cell Adhesion, Cell-matrix Interaction +4
Engineering biocompatible implant surfaces
Sebastian Bauer, Patrik Schmuki, Klaus von der Mark et al. · Progress in Materials Science · 2012 · 760 citations