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两种基于硅酸盐的材料,即生物陶瓷(Biodentine)和生物根RCS(BioRoot RCS),在反应性和修复性牙本质形成模型中对牙髓干细胞的体外作用。

In vitro effects of two silicate-based materials, Biodentine and BioRoot RCS, on dental pulp stem cells in models of reactionary and reparative dentinogenesis.

作者信息

Loison-Robert Ludwig Stanislas, Tassin Mathilde, Bonte Eric, Berbar Tsouria, Isaac Juliane, Berdal Ariane, Simon Stéphane, Fournier Benjamin P J

机构信息

School of Dentistry, Paris Descartes University, Sorbonne Paris Cité, Paris, France.

« Molecular Oral Pathophysiology » group, INSERM UMRS 1138, Cordeliers Research Center, Paris Descartes University, Paris, France.

出版信息

PLoS One. 2018 Jan 25;13(1):e0190014. doi: 10.1371/journal.pone.0190014. eCollection 2018.

Abstract

BACKGROUND

Calcium silicate-based cements are biomaterials with calcium oxide and carbonate filler additives. Their properties are close to those of dentin, making them useful in restorative dentistry and endodontics. The aim of this study was to evaluate the in vitro biological effects of two such calcium silicate cements, Biodentine (BD) and Bioroot (BR), on dental stem cells in both direct and indirect contact models. The two models used aimed to mimic reparative dentin formation (direct contact) and reactionary dentin formation (indirect contact). An original aspect of this study is the use of an interposed thin agarose gel layer to assess the effects of diffusible components from the materials.

RESULTS

The two biomaterials were compared and did not modify dental pulp stem cell (DPSC) proliferation. BD and BR showed no significant cytotoxicity, although some cell death occurred in direct contact. No apoptosis or inflammation induction was detected. A striking increase of mineralization induction was observed in the presence of BD and BR, and this effect was greater in direct contact. Surprisingly, biomineralization occurred even in the absence of mineralization medium. This differentiation was accompanied by expression of odontoblast-associated genes. Exposure by indirect contact did not stimulate the induction to such a level.

CONCLUSION

These two biomaterials both seem to be bioactive and biocompatible, preserving DPSC proliferation, migration and adhesion. The observed strong mineralization induction through direct contact highlights the potential of these biomaterials for clinical application in dentin-pulp complex regeneration.

摘要

背景

硅酸钙基水门汀是一种含有氧化钙和碳酸盐填充添加剂的生物材料。它们的性质与牙本质相近,使其在修复牙科和牙髓病学中具有应用价值。本研究的目的是评估两种此类硅酸钙水门汀,即百康特(BD)和生物根(BR),在直接接触和间接接触模型中对牙干细胞的体外生物学效应。所使用的两种模型旨在模拟修复性牙本质形成(直接接触)和反应性牙本质形成(间接接触)。本研究的一个独特之处在于使用了一层薄的琼脂糖凝胶层来评估材料中可扩散成分的影响。

结果

对这两种生物材料进行了比较,结果显示它们并未改变牙髓干细胞(DPSC)的增殖。BD和BR均未显示出明显的细胞毒性,尽管在直接接触时出现了一些细胞死亡。未检测到细胞凋亡或炎症诱导现象。在BD和BR存在的情况下,观察到矿化诱导显著增加,且这种效应在直接接触时更为明显。令人惊讶的是,即使在没有矿化培养基的情况下也发生了生物矿化。这种分化伴随着成牙本质细胞相关基因的表达。间接接触暴露并未刺激诱导达到如此程度。

结论

这两种生物材料似乎都具有生物活性和生物相容性,能够保持DPSC的增殖、迁移和黏附。通过直接接触观察到的强烈矿化诱导突出了这些生物材料在牙本质 - 牙髓复合体再生临床应用中的潜力。

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