Comparing Initial Wound Healing and Osteogenesis of Porous Tantalum Trabecular Metal and Titanium Alloy Materials

Author:

Bencharit Sompop1,Morelli Thiago2,Barros Silvana2,Seagroves Jackson T.3,Kim Steven4,Yu Ning4,Byrd Kevin4,Brenes Christian5,Offenbacher Steven2

Affiliation:

1. Departments of General Practice and Oral and Maxillofacial Surgery, School of Dentistry and Department of Biomedical Engineering, School of Engineering, Virginia Commonwealth University, Richmond, Va.

2. Department of Periodontology, School of Dentistry, University of North Carolina, Chapel Hill, NC.

3. Department of Prosthodontics, School of Dentistry, University of North Carolina, Chapel Hill, NC.

4. Curriculum in Oral Biology, School of Dentistry, University of North Carolina, Chapel Hill, NC.

5. Department of General Dentistry, Dental College of Georgia, Augusta University, Augusta, Ga.

Abstract

Porous tantalum trabecular metal (PTTM) has long been used in orthopedics to enhance neovascularization, wound healing, and osteogenesis; recently, it has been incorporated into titanium alloy dental implants. However, little is known about the biological responses to PTTM in the human oral cavity. We have hypothesized that, compared with conventional titanium alloy, PTTM has a greater expression of genes specific to neovascularization, wound healing, and osteogenesis during the initial healing period. Twelve subjects requiring at least 4 implants in the mandible were enrolled. Four 3 × 5mm devices, including 2 titanium alloy tapered screws and 2 PTTM cylinders, were placed in the edentulous mandibular areas using a split-mouth design. One device in each group was trephined for analysis at 2 and 4 weeks after placement. RNA microarray analysis and ingenuity pathway analysis were used to analyze osteogenesis gene expression and relevant signaling pathways. Compared to titanium alloy, PTTM samples exhibited significantly higher expressions of genes specific to cell neovascularization, wound healing, and osteogenesis. Several genes—including bone morphogenic proteins, collagens, and growth factors—were upregulated in the PTTM group compared to the titanium alloy control. PTTM materials may enhance the initial healing of dental implants by modifying gene expression profiles.

Publisher

American Academy of Implant Dentistry

Subject

Oral Surgery

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