In vivo study of dual functionalized mussel-derived bioactive peptides promoting 3D-printed porous Ti6Al4V scaffolds for repair of rabbit femoral defects

Author:

Zhang Run Ze1ORCID,Shi Qin2,Zhao Huan2,Pan Guo qing2,Shao Long hui1,Wang Jia Feng1,Liu Hong wei3

Affiliation:

1. Dalian Medical University, Dalian, China

2. Suzhou University, Suzhou, China

3. Changzhou Second People's Hospital of Nanjing Medical University, Changzhou, China

Abstract

The 3D printed porous titanium alloy scaffolds are beneficial to enhance angiogenesis, osteoblast adhesion, and promote osseointegration. However, titanium alloys are biologically inert, which makes the bond between the implant and bone tissue weak and prone to loosening. Inspired by the natural biological marine mussels, we designed four-claw-shaped mussel-derived bioactive peptides for the decoration of porous titanium alloy scaffolds: adhesion peptide-DOPA, anchoring peptide-RGD and osteogenic-inducing peptide-BMP-2. And the bifunctionalization of 3D-printed porous titanium alloy scaffolds was evaluated in vivo in a rabbit model of bone defect with excellent promotion of osseointegration and mechanical stability. Our results show that the in vivo osseointegration ability of the modified 3D printed porous titanium alloy test piece is significantly improved, and the bifunctional polypeptide coating group E has the strongest osseointegration ability. In conclusion, our experimental design partially solves the problems of stress shielding effect and biological inertness, and provides a convenient and feasible method for the clinical application of titanium alloy implants in biomedical implant materials.

Funder

Changzhou science and technology project fund

Publisher

SAGE Publications

Subject

Biomedical Engineering,Biomaterials

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