4.7 Article

An Engineered Biomimetic Peptide Regulates Cell Behavior by Synergistic Integrin and Growth Factor Signaling

期刊

ADVANCED HEALTHCARE MATERIALS
卷 10, 期 7, 页码 -

出版社

WILEY
DOI: 10.1002/adhm.202001757

关键词

biomimetic peptides; cell adhesion; cell differentiation; DWIVA; RGD; surface functionalization

资金

  1. Spanish Government through a Ramon y Cajal grant [RYC-2015-18566]
  2. MINECO-FEDER [MAT2017-83905-R, RTI2018-098075-B-C21]
  3. AGAUR [2017 SGR1165]
  4. Max Planck Society
  5. Deutsche Forschungsgemeinschaft (DFG) [SFB TRR79 TPB05]
  6. Generalitat de Catalunya through the ICREA Academia Award
  7. European Union's Horizon 2020 research and innovation program under the Marie Skodowska-Curie grant [872869]

向作者/读者索取更多资源

A biomimetic peptide combining RGD cell adhesive sequence and DWIVA osteogenic motif was successfully used to functionalize glass substrates, enhancing cell adhesion and activating BMP-dependent signaling. The biomimetic interfaces have potential in regulating cell-material interactions and improving cellular responses.
Recreating the healing microenvironment is essential to regulate cell-material interactions and ensure the integration of biomaterials. To repair bone, such bioactivity can be achieved by mimicking its extracellular matrix (ECM) and by stimulating integrin and growth factor (GF) signaling. However, current approaches relying on the use of GFs, such as bone morphogenetic protein 2 (BMP-2), entail clinical risks. Here, a biomimetic peptide integrating the RGD cell adhesive sequence and the osteogenic DWIVA motif derived from the wrist epitope of BMP-2 is presented. The approach offers the advantage of having a spatial control over the single binding of integrins and BMP receptors. Such multifunctional platform is designed to incorporate 3,4-dihydroxyphenylalanine to bind metallic oxides with high affinity in a one step process. Functionalization of glass substrates with the engineered peptide is characterized by physicochemical methods, proving a successful surface modification. The biomimetic interfaces significantly improve the adhesion of C2C12 cells, inhibit myotube formation, and activate the BMP-dependent signaling via p38. These effects are not observed on surfaces displaying only one bioactive motif, a mixture of both motifs or soluble DWIVA. These data prove the biological potential of recreating the ECM and engaging in integrin and GF crosstalk via molecular-based mimics.

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