2013조직공학과 재생의학Requires access

Original Article : Osteoinductivity Depends on the Ratio of Demineralized Bone Matrix to Acellular Dermal Matrix in Defects in Rat Skulls

Jin Kim, Kwang‐Won Lee, Jae Hyoung Ahn, Jin Young Kim, Tae Yeon Lee, Bohm Choi

Open publisher page 0 citations

Abstract

Demineralized bone matrix (DBM) is the most commonly used allograft material. DBM has been applied in various fields because its healing effects are similar to those of autografts, with fewer side effects. Efforts to enhance its convenience have explored the use of human acellular dermal matrix (AM) as a carrier graft material for defective soft tissue, given the difficulty of using solid particles of DBM. The induction ability of AM combined with the osteoinduction ability of DBM is considered to have a synergistic effect. This study evaluated the outcomes of treatment with various ratios of a DBM/AM mixture in defects in rat skulls. Imaging measurements and histological analyses were performed 4 and 8 weeks after treatment to investigate the characteristics and formation of new bone in treated and untreated groups. Groups treated with 7:3 and 5:5 DBM: AM ratios showed no difference in osteogenetic ability compared with the group treated with DBM alone. This finding indicates that the use of a proper DBM: AM ratio maintains osteogenetic ability, providing a convenient and sufficient clinical application. This DBM/AM mixture is the first graft material developed in Korea.

About this research paper

What this paper is about

Demineralized bone matrix (DBM) is the most commonly used allograft material. DBM has been applied in various fields because its healing effects are similar to those of autografts, with fewer side effects. Efforts to enhance its convenience have explored the use of human acellular dermal matrix (AM) as a carrier graft material for defective soft tissue, given the difficulty of using solid particles of DBM. The induction ability of AM combined with the osteoinduction ability of DBM is considered to have a synergistic effect. This study evaluated the outcomes of treatment with various ratios of a DBM/AM mixture in defects in rat skulls. Imaging measurements and histological analyses were performed 4 and 8 weeks after treatment to investigate the characteristics and formation of new bone in treated and untreated groups. Groups treated with 7:3 and 5:5 DBM: AM ratios showed no difference in osteogenetic ability compared with the group treated with DBM alone. This finding indicates that the use of a proper DBM: AM ratio maintains osteogenetic ability, providing a convenient and sufficient clinical application. This DBM/AM mixture is the first graft material developed in Korea.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Demineralized bone matrix (DBM) is the most commonly used allograft material. DBM has been applied in various fields because its healing effects are similar to those of autografts, with fewer side effects. Efforts to enhance its convenience have explored the use of human acellular dermal matrix (AM) as a carrier graft material for defective soft tissue, given the difficulty of using solid particles of DBM. The induction ability of AM combined with the osteoinduction ability of DBM is considered to have a synergistic effect. This study evaluated the outcomes of treatment with various ratios of a DBM/AM mixture in defects in rat skulls. Imaging measurements and histological analyses were performed 4 and 8 weeks after treatment to investigate the characteristics and formation of new bone in treated and untreated groups. Groups treated with 7:3 and 5:5 DBM: AM ratios showed no difference in osteogenetic ability compared with the group treated with DBM alone. This finding indicates that the use of a proper DBM: AM ratio maintains osteogenetic ability, providing a convenient and sufficient clinical application. This DBM/AM mixture is the first graft material developed in Korea.

Key concepts: dBm, Demineralized bone matrix, Matrix (chemical analysis), Bone matrix, Biomedical engineering, Human bone, Dentistry, Surgery

Related papers

Back to paper searchBrowse research topicsOriginal source
Original Article : Osteoinductivity Depends on the Ratio of Demineralized Bone Matrix to Acellular Dermal Matrix in Defects in Rat Skulls — Research Paper | ScholarLens