Titanium membrane layered between fluvastatin-loaded poly (lactic-co-glycolic) acid for guided bone regeneration

Author:

Furuhashi Akihiro1,Rakhmatia Yunia Dwi12ORCID,Ayukawa Yasunori1,Koyano Kiyoshi3

Affiliation:

1. Section of Implant and Rehabilitative Dentistry, Division of Oral Rehabilitation, Faculty of Dental Science, Kyushu University , Higashi, Fukuoka-ku 812-8582, Japan

2. Department of Prosthodontic, Faculty of Dentistry, Padjadjaran University , Kota Bandung, Jawa Barat 40132, Indonesia

3. Division of Advanced Dental Devices and Therapeutics, Faculty of Dental Science, Kyushu University , Higashi, Fukuoka-ku 812-8582, Japan

Abstract

Abstract The aim of this study was to investigate titanium membranes (TMs) layered between poly (lactic-co-glycolic acid) (PLGA) containing fluvastatin (FS) for use in guided bone regeneration. Membranes consisting of PLGA, FS-containing PLGA (PLGA–FS), TM layered between PLGA (TM–PLGA) and TM layered between FS-containing PLGA (TM–PLGA–FS) were prepared, and their mechanical and chemical properties were evaluated. The TM groups showed statistically significant differences, in terms of tensile strength and elastic modulus, when compared to the PLGA groups. The release of FS was demonstrated to be higher in the TM–PLGA–FS group than the PLGA–FS group after Day 14. The effect of membrane implantation on the calvaria of Wistar rats was measured using micro-computed tomography (micro-CT) and morphometrical analyses, as well as histological observations. At 4 weeks, the TM–PLGA–FS and TM–PLGA groups were found to have lower bone mineral density but higher bone formation, when compared to the control and PLGA groups. At 8 weeks, the use of TM–PLGA–FS membranes significantly enhanced bone formation in the calvaria model, compared to the other groups. These results suggest that a TM layered between PLGA containing FS potentially enhances bone formation, thus showing good potential as a GBR membrane.

Funder

Japanese Society for Promotion of Science to A.F

Publisher

Oxford University Press (OUP)

Subject

Biomaterials

Reference65 articles.

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