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体外评价钛种植体组件用牙体黏结剂的细胞相容性。

In Vitro Evaluation of Cell Compatibility of Dental Cements Used with Titanium Implant Components.

机构信息

Department of Bioengineering, University of Texas at Dallas, Richardson, TX.

Department of Biological Sciences, University of Texas at Dallas, Richardson, TX.

出版信息

J Prosthodont. 2019 Feb;28(2):e705-e712. doi: 10.1111/jopr.12784. Epub 2018 Mar 9.

Abstract

PURPOSE

To evaluate the biocompatibility of five dental cement compositions after directly exposing human gingival fibroblast (HGF) and MC3T3-E1 preosteoblast cells to cement alone and cement applied on commercially pure titanium (cpTi) specimens.

MATERIALS AND METHODS

Nanostructurally integrated bioceramic (NIB), resin (R), resin-modified glass ionomer (RMGIC), zinc oxide eugenol (ZOE), and zinc phosphate (ZP) compositions were prepared according to the respective manufacturer's instructions. Samples were prepared in cylindrical Teflon molds or applied over the entire surface of polished cpTi discs. All samples were cured for 0.5, 1, 12, or 24 hours post-mixing. Direct contact testing was conducted according to ISO 10993 by seeding 6-well plates at 350,000 cells/well. Plates were incubated at 37°C in a humidified atmosphere with 5% CO for 24 hours before individually plating samples and cpTi control discs. Plates were then incubated for an additional 24 hours. Microtetrazolium (MTT) cell viability assays were used to measure sample cytotoxicity.

RESULTS

For samples that cured for 24 hours prior to direct contact exposure, only NIB and ZP cements when cemented on cpTi demonstrated cell viability percentages above the minimum biocompatibility requirement (≥70%) for both the investigative cell lines. R, RMGIC, and ZOE cements exhibited moderate to severe cytotoxic effects on both cell lines in direct contact and when cemented on cpTi specimens. For HGF cells, ZOE cemented-cpTi specimens exhibited significantly decreased cytotoxicity, whereas RMGIC cemented-cpTi specimens exhibited significantly increased cytotoxicity.

CONCLUSIONS

Despite previous studies that showed enhanced cpTi corrosion activity for fluoride-containing compositions (NIB and ZP), there was no significant difference in cytotoxicity between cement alone and cemented-cpTi. In general, the MC3T3-E1 preosteoblast cells were more sensitive than HGF cells to cement composition. Ultimately, cement composition played a significant role in maintaining host cell compatibility. Results of this work help illustrate the impact of different cement formulations on host cell health and emphasize the need for understanding material properties when selecting certain formulations of dental cements, which can ultimately influence the survival of dental implant systems.

摘要

目的

评估单独使用牙水泥和涂覆在商用纯钛(cpTi)标本上的牙水泥对人牙龈成纤维细胞(HGF)和 MC3T3-E1 前成骨细胞的直接暴露后的生物相容性。

材料与方法

根据各自制造商的说明制备纳米结构整合生物陶瓷(NIB)、树脂(R)、树脂改性玻璃离子(RMGIC)、氧化锌丁香酚(ZOE)和磷酸锌(ZP)牙水泥。将样品制备在圆柱形聚四氟乙烯模具中或涂覆在抛光 cpTi 圆盘的整个表面上。所有样品在混合后 0.5、1、12 或 24 小时进行固化。根据 ISO 10993 进行直接接触测试,在 6 孔板中接种 350000 个细胞/孔。将平板在 37°C、相对湿度为 5%的 CO2 环境中孵育 24 小时,然后单独接种样品和 cpTi 对照盘。然后将平板再孵育 24 小时。使用微量四唑(MTT)细胞活力测定来测量样品的细胞毒性。

结果

对于在直接接触暴露前固化 24 小时的样品,只有 NIB 和 ZP 牙水泥在涂覆 cpTi 时显示出对两种研究细胞系的最低生物相容性要求(≥70%)的细胞活力百分比。R、RMGIC 和 ZOE 牙水泥在直接接触和涂覆 cpTi 标本时对两种细胞系均表现出中度至重度细胞毒性。对于 HGF 细胞,ZOE 涂覆的 cpTi 标本显示出显著降低的细胞毒性,而 RMGIC 涂覆的 cpTi 标本显示出显著增加的细胞毒性。

结论

尽管先前的研究表明含氟牙水泥(NIB 和 ZP)会增强 cpTi 的腐蚀活性,但单独的牙水泥和涂覆的 cpTi 之间的细胞毒性没有显著差异。一般来说,MC3T3-E1 前成骨细胞对牙水泥成分的敏感性高于 HGF 细胞。最终,牙水泥成分在维持宿主细胞相容性方面起着重要作用。本研究结果有助于说明不同牙水泥配方对宿主细胞健康的影响,并强调在选择特定牙水泥配方时了解材料性能的必要性,这最终会影响牙种植体系统的生存。

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