Bone augmentation with a prototype coral exoskeleton-derived bone replacement material applied to experimental one-wall infrabony defects created in alveolar bone

Author:

IKEDA Hayato1,OKAMURA Tomoharu2,NISHIKAWA Tetsunari3,KOBAYASHI Nobuhiro4,HASHIMOTO Yoshiya5,TOMINAGA Kazuya2,ISEKI Tomio1

Affiliation:

1. Department of Oral and Maxillofacial Surgery I, School of Dentistry, Osaka Dental University

2. Department of Oral Pathology, School of Dentistry, Osaka Dental University

3. Center of Innovation in Dental Education, School of Dentistry, Osaka Dental University

4. Department of Oral Implantology, School of Dentistry, Osaka Dental University

5. Department of Biomaterials, School of Dentistry, Osaka Dental University

Publisher

Japanese Society for Dental Materials and Devices

Subject

General Dentistry,Ceramics and Composites

Reference34 articles.

1. 1) Darby I. Periodontal materials. Aust Dent J 2011; 56: 107-118.

2. 2) Peppas NA, Langer R. New challenges in biomaterials. Science 1994; 263: 1715-1720.

3. 3) Nishikawa T, Okamura T, Kokubu M, Kato H, Imai K, Ono T, et al. Morphological and physical characteristics and cell affinity of coral as a scaffold. J Oral Tissue Engin 2011; 9: 88-95.

4. 4) Nishikawa T, Okamura T, Masuno K, Matsumoto H, Hirose M, Uemura N, et al. Comparative study of physical and morphological characteristics of cultured and natural coral as a bone augmentation scaffold. J Oral Tissue Engin 2016; 14: 107-113.

5. 5) Nishikawa T, Okamura T, Ono T, Matsushita H, Imai K, Honda Y, et al. Bone augmentation experiment using coral on the skull of rat. Nano Biomed 2013; 5: 109-113.

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