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Reformulated mineral trioxide aggregate components and the assessments for use as future dental regenerative cements

机译:重新配制的三氧化二矿物骨料成分以及用作未来牙科再生水泥的评估

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摘要

Mineral trioxide aggregate, which comprises three major inorganic components, namely, tricalcium silicate (C3S), dicalcium silicate (C2S), and tricalcium aluminate (C3A), is promising regenerative cement for dentistry. While mineral trioxide aggregate has been successfully applied in retrograde filling, the exact role of each component in the mineral trioxide aggregate system is largely unexplored. In this study, we individually synthesized the three components, namely, C3S, C2A, and C3A, and then mixed them to achieve various compositions (a total of 14 compositions including those similar to mineral trioxide aggregate). All powders were fabricated to obtain high purity. The setting reaction of all cement compositions was within 40 min, which is shorter than for commercial mineral trioxide aggregate (~150 min). Over time, the pH of the composed cements initially showed an abrupt increase and then plateaued (pH 10–12), which is a typical behavior of mineral trioxide aggregate. The compression and tensile strength of the composed cements increased (2–4 times the initial values) with time for up to 21 days in an aqueous medium, the degree to which largely depended on the composition. The cell viability test with rat mesenchymal stem cells revealed no toxicity for any composition except C3A, which contained aluminum. To confirm the in vivo biological response, cement was retro-filled into an extracted rat tooth and the complex was re-implanted. Four weeks post-operation, histological assessments revealed that C3A caused significant tissue toxicity, while good tissue compatibility was observed with the other compositions. Taken together, these results reveal that of the three major constituents of mineral trioxide aggregate, C3A generated significant toxicity in vitro and in vivo, although it accelerated setting time. This study highlights the need for careful consideration with regard to the composition of mineral trioxide aggregate, and if possible (when other properties are satisfactory), the C3A component should be avoided, which can be achieved by the mixture of individual components.
机译:三氧化矿物骨料包含三种主要的无机成分,分别是硅酸三钙(C3S),硅酸二钙(C2S)和铝酸三钙(C3A),是有望用于牙科的再生水泥。尽管三氧化二矿骨料已成功地应用于逆行填充,但三氧化二矿骨料系统中各组分的确切作用尚待进一步研究。在这项研究中,我们分别合成了C3S,C2A和C3A这三种成分,然后将它们混合以实现各种组成(总共14种组成,包括类似于三氧化二矿骨料的那些)。制造所有粉末以获得高纯度。所有水泥组合物的固化反应均在40分钟内,比市售三氧化二矿物骨料的固化反应短(〜150分钟)。随着时间的流逝,组成的水泥的pH值最初会突然增加,然后达到稳定(pH 10-12),这是三氧化二矿骨料的典型行为。在水性介质中,组合水泥的抗压强度和抗张强度会随着时间的增加而增加(是初始值的2-4倍),时间长达21天,而程度在很大程度上取决于组成。用大鼠间充质干细胞进行的细胞生存力测试显示,除​​了含有铝的C3A以外,任何成分均无毒性。为了证实体内生物学反应,将水泥回填到拔出的大鼠牙齿中,然后将复合物重新植入。术后四周,组织学评估显示,C3A引起明显的组织毒性,而其他组合物具有良好的组织相容性。总而言之,这些结果表明,三氧化二矿物聚集体的三个主要成分中,C3A在体内和体外产生了明显的毒性,尽管它加速了凝固时间。这项研究强调需要仔细考虑三氧化二矿骨料的组成,并且如果可能(当其他性能令人满意时),应避免C3A组分,这可以通过单独组分的混合来实现。

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