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基于聚烯烃的载体根管封闭用核的合成与初步评价。

Synthesis and preliminary evaluation of a polyolefin-based core for carrier-based root canal obturation.

机构信息

Department of Biomaterials, King's College London Dental Institute, London, United Kingdom.

出版信息

J Endod. 2012 Jul;38(7):983-6. doi: 10.1016/j.joen.2012.04.004. Epub 2012 May 18.

Abstract

INTRODUCTION

Carrier-based gutta-percha is an effective method of root canal obturation creating a 3-dimensional filling; however, retrieval of the plastic carrier is relatively difficult, particularly with smaller sizes. The purpose of this study was to develop composite carriers consisting of polyethylene (PE), hydroxyapatite (HA), and strontium oxide (SrO) for carrier-based root canal obturation.

METHODS

Composite fibers of HA, PE, and SrO were fabricated in the shape of a carrier for delivering gutta-percha (GP) using a melt-extrusion process. The fibers were characterized using infrared spectroscopy and the thermal properties determined using differential scanning calorimetry. The elastic modulus and tensile strength tests were determined using a universal testing machine. The radiographic appearance was established using digital periapical radiographs.

RESULTS

The composite core carrier exhibited a melting point of 111°C to 112°C, which would facilitate removal by heat application. The elastic modulus and the tensile strength were found to be lower than those of Thermafil carriers (Dentsply Tulsa Dental, Tulsa, OK). The preliminary radiographic evaluation showed that the novel composite core carrier is sufficiently radiopaque and can be distinguished from gutta-percha.

CONCLUSIONS

The PE-HA-SrO composites were successfully melt processed into composite core carriers for delivering gutta-percha into the root canal space.

摘要

简介

基于载体的牙胶是一种有效的根管充填方法,可形成三维充填;然而,塑料载体的取出相对困难,尤其是对于较小尺寸的载体。本研究旨在开发由聚乙烯(PE)、羟基磷灰石(HA)和氧化锶(SrO)组成的复合载体,用于基于载体的根管充填。

方法

使用熔融挤出工艺将 HA、PE 和 SrO 复合纤维制成用于输送牙胶(GP)的载体形状。使用红外光谱对纤维进行表征,并使用差示扫描量热法测定其热性能。使用万能试验机测定弹性模量和拉伸强度试验。使用数字根尖射线照相术建立射线照相外观。

结果

复合芯载体表现出 111°C 至 112°C 的熔点,这有利于通过热应用进行去除。发现弹性模量和拉伸强度低于 Thermafil 载体(登士柏图尔萨牙科,塔尔萨,俄克拉荷马州)。初步射线照相评估表明,新型复合芯载体具有足够的射线可透性,可与牙胶区分开来。

结论

PE-HA-SrO 复合材料成功地熔融加工成复合芯载体,用于将牙胶输送到根管空间。

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