AI Article Synopsis

  • A new series of dendrons, featuring a growth peptide for bone and catechol domains for binding, were synthesized and tested for their affinity to various materials like hydroxyapatite and different metal oxides.
  • The binding characteristics allowed for selective patterning of bioactive peptides on TiO2-coated surfaces, which were effective in cell culture studies, showing that the peptides remained active for at least two weeks.
  • The presence of these peptides led to significant increases in bone-related markers and calcium deposition, suggesting that these dendrons could be useful for enhancing orthopaedic implants and fixation devices.

Article Abstract

A series of multivalent dendrons containing a bioactive osteogenic growth peptide (OGP) domain and surface-binding catechol domains were obtained through solid phase synthesis, and their binding affinity to hydroxyapatite, TiO2, ZrO2, CeO2, Fe3O4 and gold was characterized using a quartz crystal microbalance with dissipation (QCM-d). Using the distinct difference in binding affinity of the bioconjugate to the metal oxides, TiO2-coated glass slides were selectively patterned with bioactive peptides. Cell culture studies demonstrated the bioavailability of the OGP and that OGP remained on the surface for at least 2 weeks under in vitro cell culture conditions. Bone sialoprotein (BSP) and osteocalcein (OCN) markers were upregulated 3-fold and 60-fold, respectively, relative to controls at 21 days. Similarly, 3-fold more calcium was deposited using the OGP tethered dendron compared to TiO2. These catechol-bearing dendrons provide a fast and efficient method to functionalize a wide range of inorganic materials with bioactive peptides and have the potential to be used in coating orthopaedic implants and fixation devices.

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Source
http://dx.doi.org/10.1021/ja508946hDOI Listing

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