Ti Nano-nodular Structuring for Bone Integration and Regeneration

Author:

Ogawa T.12,Saruwatari L.12,Takeuchi K.12,Aita H.12,Ohno N.12

Affiliation:

1. Laboratory for Bone and Implant Sciences -LBIS-, The Jane and Jerry Weintraub Center for Reconstructive Biotechnology, Division of Advanced Prosthodontics, Biomaterials and Hospital Dentistry, UCLA School of Dentistry, 10833 Le Conte Avenue -B3-081 CHS-, Box 951668, Los Angeles, CA 90095-1668, USA; and

2. Department of Oral Anatomy, Aichi-Gakuin University, School of Dentistry, Nagoya, Japan

Abstract

Nanostructuring technology has been proven to create unique biological properties in various biomaterials. Here we present a discovered phenomenon of titanium nano-nodular self-assembly that occurs during physical vapor depositions of titanium (Ti) onto specifically conditioned micro-textured titanium surfaces, and test a hypothesis that the Ti nanostructure has the potential to enhance bone-titanium integration. The nanostructure creation effectively provided geometrical undercut and increased the surface area by up to 40% compared with the acid-etched surface with microtopography. Depending on the size control, the nano-nodules can be added without smearing the existing micro-texture, creating a nano-micro-hybrid architecture. Titanium implants with 560-nm nano-nodules produced 3.1 times greater strength of osseointegration than those with an acid-etched surface in a rat femur model. The discovered titanium nano-nodular self-structuring has been proven feasible on biocompatible materials other than titanium, offering new avenues for the development of implant surfaces and other implantable materials for better bone-generative and -regenerative potential.

Publisher

SAGE Publications

Subject

General Dentistry

Reference20 articles.

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