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首页> 外文期刊>Australian Dental Journal >Response of periodontium to mineral trioxide aggregate and Biodentine: a pilot histological study on humans
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Response of periodontium to mineral trioxide aggregate and Biodentine: a pilot histological study on humans

机译:牙周对矿物三氧化物骨料和生物烯烃的反应:人类的试验组织学研究

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Abstract Background The aim of this study was to investigate for the first time the histological response of human periodontium to mineral trioxide aggregate ( MTA ) and Biodentine. Methods Six patients scheduled for implant full‐arch rehabilitation were randomly assigned to one of the two test groups: MTA or Biodentine treatment. For each patient, two teeth scheduled for strategic extraction were randomly assigned either to the test or to the control treatment. A lateral perforation was drilled on the root and either repaired with MTA /Biodentine or filled with gutta‐percha(control). Three months later, the teeth were extracted along with the coronal third of the alveolar bone and a portion of gingival tissue, while performing implant placement, and processed for histological analysis. Results Biodentine resulted in less extrusion into the periodontal environment. All the materials showed good biocompatibility. A new mineralized cementum‐like tissue incorporating periodontal fibres was visible in all cases treated with MTA . A small amount of new mineralized tissue was found in two Biodentine cases but not in control cases. Biodentine resulted in less damage to the periodontal ligament. Conclusions Bioactivity and biocompatibility of MTA were confirmed in human models. Biodentine proved to be biocompatible, but it seems not to induce cementum regeneration.
机译:摘要背景本研究的目的是首次调查人类癌症对矿物三氧化物骨料(MTA)和生物烯的组织学响应。方法将患有植入物全拱康复的六名患者随机分配给两种测试组中的一种:MTA或生物烯.治疗。对于每位患者,预定用于战略提取的两颗牙齿被随机分配到测试或对照处理。在根部上钻出侧面穿孔,并且用MTA /生物碘酸盐修复或填充Gutta-PERCHA(对照)。三个月后,牙齿与肺泡骨的冠状三分之一和一部分牙龈组织提取,同时进行植入物放置,并加工组织学分析。结果生物尼导致较少挤出牙周环境。所有材料显示出良好的生物相容性。在用MTA处理的所有病例中可见掺入牙周纤维的新的矿化水泥样组织。在两个生物碘烯病例中发现了少量新的矿化组织,但不在对照情况下发现。生物烯内对牙周韧带造成的损害较小。结论在人模型中证实了MTA的生物活性和生物相容性。生物烯烯已被证明是生物相容性的,但似乎不诱导豆切割再生。

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