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Physicochemical and osteogenic properties of chairside processed tooth derived bone substitute and bone graft materials

机译:席位加工牙源性骨替代骨替代骨替代骨替代骨移植材料的物理化学和成骨特性

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To analyze physicochemical such as surface structures, the crystallinity, chemical composition, calcium phosphate dissolution and osteogenic properties of tooth derived bone substitute (TDBS) processed chair-side and other grafting materials. The number of anaerobic and facultative anaerobic bacteria in the supernatant of processed TDBS was determined. Human osteoblasts were co-cultured with TDBS or allograft in transwell system to examine cell migration. BMP2 released from TDBS was measured by ELISA. TDBS had high crystallinity similar to BoneCeramic while it had a broad pattern to ramus bone, OraGRAFT, and Bio-Oss. TDBS contained carbon, calcium, oxygen, phosphate, sodium and magnesium elements like others. Calcium/phosphorus dissolution of TDBS show closely related to those of mandibular ramus bone and OraGRAFT. In addition, microbial decontamination of TDBS by the chemical processing revealed a hundred percent efficacy. The osteoconductive and osteoinductive properties demonstrated in the TDBS processed chairside suggested the potential of an alternative for bone grafting material.
机译:为了分析物理化学,如表面结构,结晶度,化学成分,磷酸钙溶解和牙齿衍生骨替代(TDBS)加工椅侧和其他嫁接材料的成骨特性。确定了加工TDB的上清液中的厌氧和兼性厌氧细菌的数量。将人的成骨细胞与TDBS或同种异体移植物共培养,以进行Transwell系统,以检查细胞迁移。通过ELISA测量从TDB释放的BMP2。 TDB与BoneCeramic相似的高结晶度,同时它对Ramus Bone,OrActaf和Bio-OSS具有广泛的模式。 TDB含有碳,钙,氧,磷酸盐,钠和镁元素,如其他物质。 TDBS的钙/磷溶解显示与下颌Ramus骨和橘子的钙质密切相关。此外,通过化学加工的TDB微生物去污显示出百分之百的疗效。在TDBS加工席席阵容中证明的骨导电和骨诱导性能表明骨移植材料的替代方案。

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