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The impact of the RGD peptide on osteoblast adhesion and spreading on zinc-substituted hydroxyapatite surface.
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Photo-expansion microscopy enables super-resolution imaging of cells embedded in 3D hydrogels.
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Design of Functional RGD Peptide-Based Biomaterials for Tissue Engineering.
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Peptides for Coating TiO Implants: An In Silico Approach.
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Bioactive Cellulose Acetate Electrospun Mats as Scaffolds for Bone Tissue Regeneration.
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Review on material parameters to enhance bone cell function in vitro and in vivo.
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Non-oncological applications of RGD-based single-photon emission tomography and positron emission tomography agents.
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Cell and Material-Specific Phage Display Peptides Increase iPS-MSC Mediated Bone and Vasculature Formation In Vivo.
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Interrelationships among hydrogen permeation, physiochemical properties and early adsorption abilities of titanium.
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Suppression of apoptosis by enhanced protein adsorption on polymer/hydroxyapatite composite scaffolds.
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The effect of enzymatically degradable IPN coatings on peri-implant bone formation and implant fixation.
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Focal adhesion kinase signaling pathways regulate the osteogenic differentiation of human mesenchymal stem cells.
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Modulating bone cells response onto starch-based biomaterials by surface plasma treatment and protein adsorption.
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Using hydroxyapatite nanoparticles and decreased crystallinity to promote osteoblast adhesion similar to functionalizing with RGD.
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Influence of RGD-loaded titanium implants on bone formation in vivo.
Tissue Eng. 2005 Nov-Dec;11(11-12):1867-75. doi: 10.1089/ten.2005.11.1867.

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