Biomolecular coating for implants
Methods and compositions are provided for improving tissue growth and device integration in vivo. Substrates and devices coated with an α 2 β 1 or α 5 β 1 integrin-specific ligand are provided. The substrates and devices coated with an α 2 β 1 or α 5 β 1 integrin-specific ligand are shown to have greater tissue formation on the surface relative to controls, in particular greater bone formation.
1. A medical device comprising an integrin-specific ligand in an amount effective to increase bone tissue growth, bone tissue implantation of the device, or a combination thereof, in a subject in need thereof, wherein the integrin-specific ligand consists of FNIII 7-10 (SEQ ID NO:2).
2. The device of claim 1 , wherein the device comprises metal.
3. The device of claim 2 , wherein the device comprises titanium.
4. The device of claim 1 , wherein the device is an implant.
5. The device of claim 1 , wherein the device is an orthopaedic implant.
6. The device of claim 1 , wherein the ligand is tethered to a surface of the device.
7. The device of claim 6 , wherein the ligand is tethered to a polymer attached to the surface of the device.
8. The device of claim 1 , wherein the device is a scaffold for bone tissue engineering.
9. A method for producing a device comprising:
adsorbing an integrin-specific ligand onto a surface of the device in an amount effective to increase bone tissue growth, bone tissue implantation of the device, or a combination thereof, in a subject in need thereof, and wherein the integrin-specific ligand consists of FNIII 7-10 (SEQ ID NO:2), wherein the device is an orthopaedic implant.
10. A method for treating a bone fracture, in a subject in need thereof, comprising implanting the device according to claim 1 .
11. A method for increasing bone tissue growth, bone tissue implantation of a medical device, or a combination thereof, in a subject in need thereof, using the medical device according to claim 1 , comprising increasing the surface density of integrin-specific ligand on the device, wherein increasing the surface density of the integrin-specific ligand on the device increases the bone tissue growth, bone tissue implantation of the device, or combination thereof, in a subject in need thereof, compared to devices having a lower surface density of the integrin-specific ligand.