Periodontal Tissue Regeneration by Transplantation of Autologous Adipose Tissue-Derived Multi-Lineage Progenitor Cells With Carbonate Apatite

Author:

Takedachi Masahide1ORCID,Kawasaki Kohsuke1,Sawada Keigo1ORCID,Sakura Kazuma2,Murata Mari1,Shimomura Junpei1,Kawakami Kazuma1,Morimoto Chiaki1,Miki Koji1,Takeshita Noboru1,Iwayama Tomoaki1,Okura Hanayuki345,Matsuyama Akifumi3,Saito Masahiro6,Kitamura Masahiro1,Murakami Shinya1

Affiliation:

1. Department of Periodontology and Regenerative Dentistry, Osaka University Graduate School of Dentistry, Suita, Japan

2. Department of Medical Innovation, Osaka University Hospital, Suita, Japan

3. Center for Reverse Translational Research, Osaka Habikino Medical Center, Osaka Prefectural Hospital Organization, Habikino, Japan

4. Adipo Medical Technology, Osaka, Japan

5. Institute of Innovative Medical Technology, Osaka. Japan

6. Department of Restorative Dentistry, Division of Operative Dentistry, Tohoku University Graduate School of Dentistry, Sendai, Japan

Abstract

We have developed an autologous transplantation method using adipose tissue-derived multi-lineage progenitor cells (ADMPCs) as a method of periodontal tissue regeneration that can be adapted to severe periodontal disease. Our previous clinical study confirmed the safety of autologous transplantation of ADMPCs and demonstrated its usefulness in the treatment of severe periodontal disease. However, in the same clinical study, we found that the fibrin gel used as the scaffold material might have caused gingival recession and impaired tissue regeneration in some patients. Carbonate apatite has a high space-making capacity and has been approved in Japan for periodontal tissue regeneration. In this study, we selected carbonate apatite as a candidate scaffold material for ADMPCs and conducted an in vitro examination of its effect on the cellular function of ADMPCs. We further performed autologous ADMPC transplantation with carbonate apatite as the scaffold material in a model of one-wall bone defects in beagles and then analyzed the effect on periodontal tissue regeneration. The findings showed that carbonate apatite did not affect the cell morphology of ADMPCs and that it promoted proliferation. Moreover, no effect on secretor factor transcription was found. The results of the in vivo analysis confirmed the space-making capacity of carbonate apatite, and the acquisition of significant new attachment was observed in the group involving ADMPC transplantation with carbonate apatite compared with the group involving carbonate apatite application alone. Our results demonstrate the usefulness of carbonate apatite as a scaffold material for ADMPC transplantation.

Funder

AMED

Grants-in-Aids for Scientific Research from the Ministry of Education, Culture, Sports, Science and Technology

Publisher

SAGE Publications

Subject

Transplantation,Cell Biology,Biomedical Engineering

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