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Evaluation of the bioactivity of fluoride‐enriched mineral trioxide aggregate on osteoblasts

机译:富含氟化物矿物三氧化铕聚集体对成骨细胞的生物活性的评价

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摘要

Abstract Aim To investigate whether a combination of mineral trioxide aggregate ( MTA ) and fluoride compounds affects bone cells. Methodology Mineral trioxide aggregate (MTA) discs (ProRoot ? , Dentsply Sirona, Ballaigues, Switzerland) with and without the addition of 0.1%, 0.25% and 0.5% sodium fluoride were characterized for their surface roughness by laser scanning microscopy and for the adhesion of human alveolar osteoblasts by scanning electron microscopy. Using eluates from fluoride‐enriched MTA discs, the cell proliferation was measured by monitoring the DNA incorporation of 5‐bromo‐2′‐deoxyuridine. Further, gene expression was evaluated by qPCR arrays, extracellular matrix mineralization was quantified by absorption measurement of Alizarin red stains, and effects were calculated with repeated measures analysis and post hoc P ‐value adjustment. Results Irrespective of fluoride addition, cell adhesion was similar on MTA discs, of which the surface roughness was comparable. Control osteoblasts had a curvilinear proliferation pattern peaking at d5, which was levelled out by incubation with MTA . The addition of fluoride partly restored the MTA ‐related reduction in the cellular proliferation rate in a dose‐dependent manner. At the mRNA level, both fluoride and MTA modulated a number of genes involved in osteogenesis, bone mineral metabolism and extracellular matrix formation. Although MTA significantly impaired extracellular matrix mineralization, the addition of fluoride supported the formation of mineralized nodules in a dose‐dependent manner. Conclusion The addition of fluoride modulated the biocompatibility of MTA in terms of supporting bone cell proliferation and hard tissue formation. Hence, fluoride enrichment is a trend‐setting advancement for MTA ‐based endodontic therapies.
机译:摘要旨在探讨矿物三氧化物聚集体(MTA)和氟化物化合物的组合是否影响骨细胞。方法论矿物三氧化物聚集体(MTA)圆盘(PROOROOT?,LENTELPLY SIRONA,BALLAIGUES,SWITZERS),其具有0.1%,0.25%和0.5%氟化钠,通过激光扫描显微镜表表征其表面粗糙度和粘附通过扫描电子显微镜检查人肺泡成骨细胞。使用富含富含氟化物的MTA盘的洗脱,通过监测5-溴-2'-脱氧尿苷的DNA掺入来测量细胞增殖。此外,通过QPCR阵列评价基因表达,通过吸收测量茜素红污渍的吸收测量来定量细胞外基质矿化,并用重复测量分析和后HOC P-value调整计算效果。结果与氟化物添加无关,细胞粘附性在MTA盘上相似,表面粗糙度可比较。对照成骨细胞在D5处具有峰值峰值,其通过与MTA孵育而升温。氟化物的加入部分地以剂量依赖性方式恢复了细胞增殖速率的MTA相关降低。在mRNA水平上,氟化物和MTA都调节了综合发生,骨矿物代谢和细胞外基质形成的许多基因。尽管MTA细胞外基质矿化明显受损,但氟化物的添加以剂量依赖性方式支持矿化结节的形成。结论在支持骨细胞增殖和硬组织形成方面,添加氟化物的添加调节MTA的生物相容性。因此,氟化物富集是基于MTA的牙髓疗法的趋势设定推进。

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  • 来源
    《International endodontic journal》 |2018年第8期|共12页
  • 作者单位

    G.E.R.N. Tissue Replacement Regeneration &

    NeogenesisAlbert‐Ludwigs‐University of FreiburgFreiburg;

    Centre for Dental MedicineAlbert‐Ludwigs‐University of FreiburgFreiburg Germany;

    Institute of Medical Biometry and StatisticsAlbert‐Ludwigs‐University of FreiburgFreiburg Germany;

    G.E.R.N. Tissue Replacement Regeneration &

    NeogenesisAlbert‐Ludwigs‐University of FreiburgFreiburg;

    Centre for Dental MedicineAlbert‐Ludwigs‐University of FreiburgFreiburg Germany;

    Centre for Dental MedicineAlbert‐Ludwigs‐University of FreiburgFreiburg Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 口腔科学;
  • 关键词

    endodontics; fluoride; gene expression; mineral trioxide aggregate; osteoblasts;

    机译:牙髓菌;氟化物;基因表达;矿物三氧化物聚集体;成骨细胞;

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