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钙硅基密封剂用根管干燥方案:对粘结强度和粘结界面的影响。

Canal Drying Protocols to Use with Calcium Silicate-based Sealer: Effect on Bond Strength and Adhesive Interface.

机构信息

Department of Restorative Dentistry, School of Dentistry of Ribeirão Preto, University of São Paulo, Ribeirão Preto, Brazil.

Department of Restorative Dentistry, School of Dentistry of Ribeirão Preto, University of São Paulo, Ribeirão Preto, Brazil.

出版信息

J Endod. 2023 Sep;49(9):1154-1160. doi: 10.1016/j.joen.2023.07.015. Epub 2023 Jul 28.

Abstract

INTRODUCTION

The aim of this study was to evaluate the influence on bond strength and interface quality of different canal drying protocols in roots filled with Bio-C Sealer (BCS; Angelus, Londrina, Paraná, Brazil).

METHODS

Ninety-six roots of upper canines were prepared with an R50 file (Reciproc; VDW GmbH, Munich, Germany) and irrigated with 2.5% sodium hypochlorite and 17% EDTA under ultrasonic agitation. Roots were divided according to the drying protocol as follows: dry, the White Mac tip (Ultradent, Indaiatuba, SP, Brazil) for 5 seconds followed by aspiration with a capillary tip for 5 seconds and paper points; slightly moist, the White Mac tip followed by capillary aspiration without paper points; wet, the White Mac tip followed by a single paper point. The roots were filled with BCS or AH Plus (AHP; Dentsply Maillefer, Ballaigues, Switzerland) (n = 16) and sectioned for the push-out test after 3 months. Failure modes were assessed, and the interface morphology was analyzed under scanning electron microscopy. After 6 months, the other half of the roots were evaluated. Data were analyzed by analysis of variance/Tukey test at 5%. The chi-square test was used in the failure analysis and the Kruskal-Wallis/Dwass-Steel-Critchlow-Fligner for interface analysis.

RESULTS

The AHP-filled roots had the highest bond strength when the canal was dried (P < .05). No difference was found for periods (P > .05). For BCS, the highest bond strength was found in the slightly moist canals (P < .05). A predominance of adhesive failures was observed. The dried canals filled with AHP had the highest percentage of good adaptation, whereas BCS had no difference.

CONCLUSIONS

The best drying protocol for AHP is using the White Mac tip followed by capillary tip aspiration and paper points until complete dryness, and for BCS, it is using the White Mac tip followed by capillary aspiration without paper points.

摘要

简介

本研究旨在评估不同根管干燥方案对上颌尖牙采用 Bio-C 密封剂(BCS;Angelus,Londrina,Paraná,巴西)进行根管充填后的粘结强度和界面质量的影响。

方法

用 R50 锉(Reciproc;VDW GmbH,慕尼黑,德国)对 96 颗上颌尖牙进行根管预备,并在超声震荡下用 2.5%次氯酸钠和 17% EDTA 冲洗。根据干燥方案将根管分为以下三组:干燥组,使用 White Mac 尖端(Ultradent,Indaiatuba,SP,巴西)干燥 5 秒,然后用毛细尖端抽吸 5 秒和纸尖;微湿组,使用 White Mac 尖端,不使用纸尖进行毛细抽吸;湿组,使用 White Mac 尖端和单个纸尖。用 BCS 或 AH Plus(AHP;Dentsply Maillefer,Ballaigues,瑞士)(每组 n = 16)充填根管,3 个月后进行推出试验。评估失效模式,并在扫描电子显微镜下分析界面形态。6 个月后,评估另一半的根管。使用方差分析/Tukey 检验进行数据统计,检验水平为 5%。使用卡方检验进行失效分析,Kruskal-Wallis/Dwass-Steel-Critchlow-Fligner 检验进行界面分析。

结果

干燥组的 AHP 充填根管粘结强度最高(P <.05)。不同时期(P >.05)之间无差异。对于 BCS,微湿组的粘结强度最高(P <.05)。观察到以粘固剂破坏为主的失效模式。干燥组的 AHP 充填根管具有最高的良好适应性比例,而 BCS 无差异。

结论

对于 AHP,最佳干燥方案是使用 White Mac 尖端,然后用毛细尖端抽吸和纸尖,直到完全干燥,对于 BCS,最佳方案是使用 White Mac 尖端,然后用毛细尖端抽吸,不使用纸尖。

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