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不同根管玷污层去除剂对三氧化矿物凝聚体水泥物理性能和微观结构的影响。

Effects of smear layer removal agents on the physical properties and microstructure of mineral trioxide aggregate cement.

机构信息

Department of Conservative Dentistry & Endodontics, Manipal College of Dental Sciences Manipal University, Manipal, Karnataka, India.

Department of Metallurgical & Materials Engineering, National Institute of Technology, Surathkal, Srinivasnagar, Mangalore, Karnataka, India.

出版信息

J Dent. 2017 Nov;66:32-36. doi: 10.1016/j.jdent.2017.08.018. Epub 2017 Sep 1.

Abstract

OBJECTIVE

To compare the effect of QMix (Dentsply Sirona), 7% maleic acid (MA), and 17% ethylenediaminetetraacetic acid (EDTA) on the microhardness, flexural strength and microstructure of mineral trioxide aggregate (MTA; ProRoot MTA, Dentsply Sirona).

METHODS

Forty MTA specimens were divided into four groups: [I] QMix [II] 7% MA [III] 17% EDTA and [IV] distilled water (control). After treatment with 5mL of the respective solution for 1min, the specimens were tested for microhardness using a Knoop hardness tester. Forty additional specimens were similarly treated and evaluated for the flexural strength using a universal testing machine. For microstructure evaluation, MTA specimens were treated in a similar manner and examined by X-ray diffractometry and scanning electron microscopy (SEM).

RESULTS

For microhardness, there were no differences between distilled water, QMix and EDTA groups. However, MTA exposed to distilled water had higher microhardness than MA. When compared with QMix and EDTA, MA had lower microhardness; there was no difference between EDTA and QMix. For flexural strength, distilled water group had higher flexural strength than the other agents. There were no differences between EDTA vs MA and EDTA vs QMix. Specimens treated with QMix had higher flexural strength than MA. X-ray diffraction indicated that EDTA inhibited hydration of MTA. For SEM, all the tested agents altered the microstructure of MTA when compared to distilled water.

CONCLUSION

MA had more detrimental effect on the physical properties of MTA and EDTA was more detrimental to the hydration of MTA.

CLINICAL SIGNIFICANCE

The present study highlights the effect of newer chelating agents on the physical properties and microstructure of MTA. Preventing the deterioration of MTA is important for its long term success in endodontic procedures.

摘要

目的

比较 QMix(登士柏西诺德)、7%马来酸(MA)和 17%乙二胺四乙酸(EDTA)对矿物三氧化物聚合体(MTA;ProRoot MTA,登士柏西诺德)显微硬度、弯曲强度和微观结构的影响。

方法

将 40 个 MTA 样本分为四组:[I] QMix [II] 7% MA [III] 17% EDTA 和[IV]蒸馏水(对照)。用 5mL 相应溶液处理 1 分钟后,用 Knoop 硬度计测试样本的显微硬度。另外 40 个样本用万能试验机进行弯曲强度测试。为了评估微观结构,用类似的方法处理 MTA 样本,并用 X 射线衍射仪和扫描电子显微镜(SEM)进行检查。

结果

对于显微硬度,蒸馏水组、QMix 组和 EDTA 组之间没有差异。然而,与 MA 相比,暴露于蒸馏水中的 MTA 具有更高的显微硬度。与 QMix 和 EDTA 相比,MA 的显微硬度较低;EDTA 和 QMix 之间没有差异。对于弯曲强度,蒸馏水组的弯曲强度高于其他试剂。EDTA 与 MA 之间以及 EDTA 与 QMix 之间没有差异。与 MA 相比,用 QMix 处理的样本具有更高的弯曲强度。X 射线衍射表明 EDTA 抑制了 MTA 的水化。对于 SEM,与蒸馏水相比,所有测试的试剂都改变了 MTA 的微观结构。

结论

MA 对 MTA 的物理性质有更不利的影响,EDTA 对 MTA 的水化更不利。

临床意义

本研究强调了较新的螯合剂对 MTA 物理性质和微观结构的影响。防止 MTA 的恶化对于其在根管治疗程序中的长期成功非常重要。

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